Showing 108 items matching "coal iron"
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Buninyong & District Historical SocietyDocument - Copy of Mining Prospectus, Prospectus for Victorian Central Coal & Iron Mining Company Lal Lal
... Prospectus for Victorian Central Coal & Iron Mining Company Lal Lal...Victorian Central Coal & Iron Mining Company...The Victorian Central Coal and Iron Mining Company re-opened the mine in 1914 but it closed due to lack of demand. ...The Victorian Central Coal and Iron Mining Company re-opened the mine in 1914 but it closed due to lack of demand. ...The Victorian Central Coal and Iron Mining Company re-opened the mine in 1914 but it closed due to lack of demand. Several unsuccessful attempts were made to re-open the mine in the early part of the 20th centuryThis draft Prospectus outlines details of the land held under Crown leases and states that the primary purpose of the Company is the Production and Supply of Electrical PowerA 3 page draft Prospectus for Brown Coal Mining at Lal Lal 1912Private and Confidential Draft Prospectus Proof Onlycoal mining, lal lal, victorian central coal & iron mining company -
Bendigo Historical Society Inc.Domestic Object - BOX/COAL IRON
... BOX/COAL IRON...Cast iron coal iron or Box iron with wooden handles, hinged top lifts for inserting hot coals inside and a chimney in front allows smoke to escape, a small hole on rear with door allows for air flow. ...Sherman Domestic Object BOX/COAL IRON ...Cast iron coal iron or Box iron with wooden handles, hinged top lifts for inserting hot coals inside and a chimney in front allows smoke to escape, a small hole on rear with door allows for air flow. Estate of E. Shermandomestic equipment, laundering, iron, estate of e. sherman -
Federation University Historical CollectionPhotograph, Lal Lal Coal and Iron Mine, Victoria, 1923
... Lal Lal Coal and Iron Mine, Victoria....1) verso: Lal Lal Coal and [Iron?] Mine 1,000 ton hopper or brown coal Designed and Built by D. ...lal lal lal lal coal mine donald mather mather bill thomas talbot mining .1) verso: Lal Lal Coal and [Iron?] Mine 1,000 ton hopper or brown coal Designed and Built by D. ...Lal Lal Coal Mine, 1923. Two black and white photographs of the Lal Lal Coal Mine. .1) A man, Bill Thomas of Talbot, stands high on a timber construction. .2) A mine site with poppet head and two chimneys..1) verso: Lal Lal Coal and [Iron?] Mine 1,000 ton hopper or brown coal Designed and Built by D. Mather 1923 [15?] miles of sapplings in the building [Ci?] called and drying [oval] 120' long 45' x 20' wide Bill Thomas shown in this photo, from Talbot.lal lal, lal lal coal mine, donald mather, mather, bill thomas, talbot, mining -
Federation University Historical CollectionNewspaper, Lal Lal Iron and Coal as reported in the Ballarat Courier, 10/07/1923
... Lal Lal Iron and Coal as reported in the Ballarat Courier...iron...lal lal coalfield...morwell...gippsland...Crockers...Arnolds...Harry Hall...Ewins...Harry Davies...Fred Halls...The London Drapery...Lal Lal Brown coal...Page 2 reports the Prospectus of the lal lal Iron and Steel Blast Furnaces Mining Company, No Liability; Mining News - Wattle Gully; Commercial News Advertisements include Crockers, Arnolds, Harry Hall, Ewins, Harry Davies, Fred Halls, The London Drapery Lal Lal Iron and Coal as reported in the Ballarat Courier Newspaper ....1) Pages 7 to 10 of the Ballarat Courier, 10 July 1923. Page 7 includes the article 'Cheap electricity' and poses questions such as 'should Ballarat look to Morwell for cheap power?', and should an independent power plant be installed at Crockers, Arnolds, Harry Hall, Ewins, Harry Davies, Fred Halls, The London Drapery there. Page 9 includes articles on Ripon's roads, Mount Cole Springs; Soldier Settlement Rates Beaufort; Creswick brass band Officers; Daylesford Road Deviation to Hepburn Springs; Dereel Public Telephone; State Electricity Supply for Beaufort; Newlyn Valedictory to Mr and Mrs W. E. Bennett Page 9 - Racing at Ascot; Avoca Golf Tournament, Chinese Herbalists Page 10 - Auctions and house sales Advertisements include Harry Davies; Fred Halls; C. Marks and Co., London Drapery, Creer the Cashman; Chamberlain's Cough Remedy; Cornell's Little Liver Pills; Paynes; W. Fley Chemist; Bickart and Dawson; Rivers; Allchin Bros; J. Bartam & Son .2) Ballarat Courier, 30 July 1937, page 1 and 2 Page 1 reports Lal Lal's Iron Ore Company being formed. Page 2 reports the Prospectus of the lal lal Iron and Steel Blast Furnaces Mining Company, No Liability; Mining News - Wattle Gully; Commercial News Advertisements include Crockers, Arnolds, Harry Hall, Ewins, Harry Davies, Fred Halls, The London Drapery electricity, lal lal, lal lal iron, lal lal coalfield, morwell, gippsland, crockers, arnolds, harry hall, ewins, harry davies, fred halls, the london drapery, lal lal brown coal, ripon's roads, mount cole springs, soldier settlement rates beaufort, creswick brass band officers, daylesford road deviation to hepburn springs, dereel public telephone, state electricity supply for beaufort, newlyn, w.e. bennett, ascot, avoca golf tournament, chinese herbalists, c. marks and co., london drapery, creer the cashman, chamberlain's cough remedy, cornell's little liver pills, paynes, w. fley chemist, bickart and dawson, rivers, allchin bros, j. bartam & son, lal lal iron and steel blast furnaces mining company, wattle gully -
Flagstaff Hill Maritime Museum and VillageDomestic object - Iron
... ...coal iron...Flagstaff Hill Warrnambool Shipwrecked-coast Flagstaff-Hill Flagstaff-Hill-Maritime-Museum Maritime-Museum Shipwreck-coast Flagstaff-Hill-Maritime-Village iron self heating iron coal iron laundry Family charcoal iron T & G Clair & Co Two emblems within circles plus the inscription "Awarded To / T & G Clark & Co. on the finger guard Self Heating Family Charcoal Iron. ...Self Heating Family Charcoal Iron. Box iron with wooden handle and brass finger guard. The finger guard has two round emblems and the inscription "Awarded To T & G Clark & Co" on it.Two emblems within circles plus the inscription "Awarded To / T & G Clark & Co. on the finger guardflagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, iron, self heating iron, coal iron, laundry, family charcoal iron, t & g clair & co -
Federation University Historical CollectionBook, Bound copies of the Ballarat School of Mines Students' Magazine, 1910-1912, 1910-1912
... coal...pig iron...ballarat school of mines alumni hydro-electric scheme tasmania ballarat mount lyell wayne krause krause ferdinand krause pyke's creek reservoir pyke's creek reservoir excursion excursions pananma coal pig iron mount morgan mount morgan old boys mine salting radium safety cages rifle shooting oliver jager oliver jaeger o.e. jaeger a. galloway henry sutton a.d. gilchrist william baragwanath virgil tucker b .whitington lim khoon fah herbert hawkesworth surveying tuneneling america clays floatation process frequency changer grampians mt buffalo mt feathertop port pirrie repatriation scotsburn scotsburn excursion Kalgoorlie school of mines Former Ballarat School of Mines Students in Kalgoorlie Kalgoorlie Ore Treatment Bound copies of the Ballarat School of Mines Students' Magazine from 1910-1912 1911 - Hydro-electric Scheme for Tasmania - Wayne Krause 1912 - Mt Lyell Disaster Bound copies of the Ballarat School of Mines Students' Magazine, 1910-1912 Book ...Bound copies of the Ballarat School of Mines Students' Magazine from 1910-1912 1911 - Hydro-electric Scheme for Tasmania - Wayne Krause 1912 - Mt Lyell Disasterballarat school of mines, alumni, hydro-electric scheme, tasmania, ballarat, mount lyell, wayne krause, krause, ferdinand krause, pyke's creek reservoir, pyke's creek reservoir excursion, excursions, pananma coal, pig iron, mount morgan, mount morgan old boys, mine salting, radium, safety cages, rifle shooting, oliver jager, oliver jaeger, o.e. jaeger, a. galloway, henry sutton, a.d. gilchrist, william baragwanath, virgil tucker, b .whitington, lim khoon fah, herbert hawkesworth, surveying, tuneneling, america, clays, floatation process, frequency changer, grampians, mt buffalo, mt feathertop, port pirrie, repatriation, scotsburn, scotsburn excursion, kalgoorlie school of mines, former ballarat school of mines students in kalgoorlie, kalgoorlie ore treatment -
Federation University Historical CollectionBook, American Institute of Mining Engineers, Transactions of the American Institute of Mining Engineers, Vol 1, 1871-1873
... coal...pig-iron...Coal-Mining (R. P Rothwell) * An Eccentric Theodolite (Francis Vinton) * The Use ad Advantages of the Prop Srew-Jack (E. Gaijot) * The Manufacture of Iron...Meetings of the institute were held in Wilkes-Barre, Bethlehem, Troy, Philadelphia, New York, Pittsburgh and Boston. american institute of mining engineers mining engineering prop screw jack mining districts in the United States of America waste inn coal mining lehigh zinc company lake superior copper districtblast furnace rolling versus hammering ingots indianablack coal pig-iron longwall system of mining wickersham process midlothian colliary, virginia plummet lamp diamond drills Stamped "Department of Mining University of Melbourne" Red hard covered book. ...Meetings of the institute were held in Wilkes-Barre, Bethlehem, Troy, Philadelphia, New York, Pittsburgh and Boston.Red hard covered book. Contents include: * List of members * Geological Distribution of MIning Districts in the United States (R.W. Raymond) * The Relation between the Speed and Effectiveness of Stamps (R.W. Raymond) * Remarks on the Waste in Coal-Mining (R. P Rothwell) * An Eccentric Theodolite (Francis Vinton) * The Use ad Advantages of the Prop Srew-Jack (E. Gaijot) * The Manufacture of Iron and Steel Rails ( John B. Pearse) * The importance of Surveying in Geology (Benjamin Smith Lyman) * Use of Blast-Furnace Slag (T. Egleston) * The Geonostical History of Metals (T. Sterry Hunt) * The Mining and Metallurgical Laboratories of the Massachusetts Institute of Technology (Robert H. Richards) Stamped "Department of Mining University of Melbourne"american institute of mining engineers, mining engineering, prop screw jack, mining districts in the united states of america, waste inn coal mining, lehigh zinc company, lake superior copper districtblast furnace, rolling versus hammering ingots, indianablack coal, pig-iron, longwall system of mining, wickersham process, midlothian colliary, virginia, plummet lamp, diamond drills -
Federation University Historical CollectionBooklet, George Skinner (Acting Government Printer), Mineral Statistics of Victoria for the Year 1874, 1875
... ...iron...coal...mineraal statistics statistics angus mackay gold exports ballarat beechworth sandhurst maryborough castlemaine ararat gippsland silver tin copper antinomy lead iron coal lignite kaolin flagging slates magnesite diamonds sapphires robert brough smyth miners machines gold yeild water rights gunpowder mining companies mining divisions wages miners' rights miners rights business licenses White Foolscap printed Government document relating Victoria's mineral statistics. ...White Foolscap printed Government document relating Victoria's mineral statistics.mineraal statistics, statistics, angus mackay, gold exports, ballarat, beechworth, sandhurst, maryborough, castlemaine, ararat, gippsland, silver, tin, copper, antinomy, lead, iron, coal, lignite, kaolin, flagging, slates, magnesite, diamonds, sapphires, robert brough smyth, miners, machines, gold yeild, water rights, gunpowder, mining companies, mining divisions, wages, miners' rights, miners rights, business licenses -
Federation University Historical CollectionBooklet, Robert Brain, Government Printer, Mineral Statistics of Victoria for the Year 1880-1881, 1881
... ...iron...coal...statistics mineral statistics h.r. williams gold yeild gold silver tin copper antinomy lead iron coal lignite kaolin flagging slates quartz mining gold districts ballarat beecworth bendigo Sandhurst maryborough castlemaine ararat gippsland water rights gunpoweder mining companies White Foolscap printed Government document relating Victoria's mineral statistics. ...White Foolscap printed Government document relating Victoria's mineral statistics.statistics, mineral statistics, h.r. williams, gold yeild, gold, silver, tin, copper, antinomy, lead, iron, coal, lignite, kaolin, flagging, slates, quartz mining, gold districts, ballarat, beecworth, bendigo, sandhurst, maryborough, castlemaine, ararat, gippsland, water rights, gunpoweder, mining companies -
Puffing Billy RailwayBenwerrin Coal Company Coal Skip, circa 1899 - 1904
... Coal Skip - made of Iron sheet and wrought iron frame & wheels...Historic - Industrial Narrow Gauge Railway - Benwerrin Coal Company , Benwerrin , Victoria, Australia puffing billy coal skip benwerrin coal company narrow gauge B,C.Co Melbourne Coal Skip - made of Iron sheet and wrought iron frame & wheels Benwerrin Coal Company Coal Skip ...BENWERRIN COAL COMPANY SKIP This quarter ton coal truck or skip was used at a small mine situated at Benwerrin near Deans Marsh in Victoria’s Otway Ranges. The mine first opened in 1899 and closed in 1904. With the fuel shortages due to World War 2, the Benwerrin Coal Company reopened the mine in 1941. The coal was loaded into skips and winched out of Box’s Creek valley on a narrow gauge incline to a loading point that was close to the Deans Marsh-Lorne Road. It was then taken by road to the Deans Marsh Railway station. The average gradient of the tramway was 1 in 4 over a length of just under 500 metres (1600 feet). The gauge of the tramway has often been referred to as 375mm (or 15 inches) as shown on the map opposite taken from “Sawdust and Steam”. However, actual measurements of the wheels show the gauge to be 400mm (or 16 inches), which is quite unusual as is the small size of the skip itself. The mine produced up to 30 tonnes of brown coal each week until it closed in 1949 and the incline tramway and its skips were abandoned. Preservation of this coal truck came as a result of interest by the Tramway Museum Society of Victoria (TMSV) in the Barlow or Box type rails that it ran on. These rails had originally come from the Beaumaris Horse Tramway and were obtained by the Benwerrin Coal Company from Hayden Bros’ abandoned timber tramway at nearby Barwon Downs. Members of the TMSV visited the mine in the 1960s only to find that most of the tramway had recently been recovered for scrap. There remained a significant number of relics around the mine adits including most of the skips. One of these remained in good condition and it was recovered for preservation in May 1967. It was restored but never displayed and a second restoration took place by the author over 2012/13 so that it could be placed in the Menzies Creek Museum where it was delivered in February 2013. Little remains of the mine today with trestles and sleepers destroyed in the “Ash Wednesday” Bushfires in 1983. References: Houghton, N (1975), Sawdust and Steam, Light Railway Research Society of Australia. Historic - Industrial Narrow Gauge Railway - Benwerrin Coal Company , Benwerrin , Victoria, AustraliaCoal Skip - made of Iron sheet and wrought iron frame & wheelsB,C.Co Melbournepuffing billy, coal skip, benwerrin coal company, narrow gauge -
City of Moorabbin Historical Society (Operating the Box Cottage Museum)Clothing - Clothing, lady's stockings "Holeproof', mid 20thC
... The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. ...The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. ...Holeproof Hosiery was a Milwaukee, Wisconsin textile firm that was founded in 1901.With extensive advertising the brand name became recognized worldwide. The business produced men's and women's hosiery, underwear, lingerie, and men's pyjamas. Holeproof Hosiery began making nylon hosiery in January 1940, starting production on 8 of its 230 machines. The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. The company went public in 1929 and opened the first Holeproof mill at Brunswick, Victoria in 1930, becoming the first manufacturer to produce and market Australian-made self-supporting socks. During the 1930s, Holeproof revolutionised the Australian market by promoting their products as a sought-after fashion accessory. The Australian company is still in business today, owned by Pacific Brands. A unused pair of lady's silk stockings in original box. 'Holeproof' 'Truly Yours' Candlelight, size 10Box Cover: Truly Yours / by / Holeproof Side Holeproof 'Candlelight' Size 10clothing, stockings, nylons, holeproof hosiery pty ltd, lingerie, melbourne, bentleigh, cheltenham moorabbin, brunswick milwaukee usa, wisconsin -
City of Moorabbin Historical Society (Operating the Box Cottage Museum)Clothing - Clothing, lady's stockings 'Holeproof', c1950
... The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. ...The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. ...Holeproof Hosiery was a Milwaukee, Wisconsin textile firm that was founded in 1901.With extensive advertising the brand name became recognized worldwide. The business produced men's and women's hosiery, underwear, lingerie, and men's pyjamas. Holeproof Hosiery began making nylon hosiery in January 1940, starting production on 8 of its 230 machines. The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. The company went public in 1929 and opened the first Holeproof mill at Brunswick, Victoria in 1930, becoming the first manufacturer to produce and market Australian-made self-supporting socks. During the 1930s, Holeproof revolutionised the Australian market by promoting their products as a sought-after fashion accessory. The Australian company is still in business today, owned by Pacific Brands. An unused pair of lady's nylon stockings in original box. 'Holeproof' 'For you', 'Precious' size 91/2Box Cover : For You / HOLEPROOF/ SUPERFINE EXQUISITE SHEERS Side : Precious 9 1/2 Package : 60 GUAGE / SHEER NYLON / BY / HOLEPROOF / 9 1/2 Card : Especially / For You / fromclothing, stockings, nylons, holeproof pty ltd, milwaukee usa, hosiery, fashion, melbourne, bentleigh, cheltenham moorabbin, brunswick, lingerie -
City of Moorabbin Historical Society (Operating the Box Cottage Museum)Clothing - Clothing, lady's stockings 'Holeproof', c1950
... The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. ...The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. ...Holeproof Hosiery was a Milwaukee, Wisconsin textile firm that was founded in 1901.With extensive advertising the brand name became recognized worldwide. The business produced men's and women's hosiery, underwear, lingerie, and men's pyjamas. Holeproof Hosiery began making nylon hosiery in January 1940, starting production on 8 of its 230 machines. The hose were made of a synthetic yarn composed of derivatives of coal and iron manufactured by Du Pont. In the late 1920s, a successful hosiery manufacturer, Staley & Staley Ltd, started making ladies hosiery under licence from the Holeproof Hosiery Company in Milwaukee, USA. The company went public in 1929 and opened the first Holeproof mill at Brunswick, Victoria in 1930, becoming the first manufacturer to produce and market Australian-made self-supporting socks. During the 1930s, Holeproof revolutionised the Australian market by promoting their products as a sought-after fashion accessory. The Australian company is still in business today, owned by Pacific BrandsAn unused pair of lady's stockings, in original box, 'Holeproof', 'Beauty Fit', ' Nocturn' Size 81/2 - 9 Box Cover : HOLEPROOF / Beauty Fit / LADDERPROOF MESH SHEERS STRETCH Inside Wrapper ; HOLEPROOF / Beauty Fit / LADDERPROOF STRETCH NYLONS 8 1/2 - 9clothing, stockings, nylons, hosiery, melbourne, bentleigh, cheltenham moorabbin, brunswick, holeproof pty ltd, lingerie, fashion -
The Beechworth Burke MuseumGeological specimen - Brown coal
... coal mine...lal lal iron mine...This particular specimen was recovered from the Lal Lal Coal and Iron Mine in Victoria, 19km from Ballarat. ...This particular specimen was recovered from the Lal Lal Coal and Iron Mine in Victoria, 19km from Ballarat. ...This particular specimen was recovered from the Lal Lal Coal and Iron Mine in Victoria, 19km from Ballarat. Brown Coal was discovered here in 1857, just alongside the Geelong to Ballarat Railway line. This discovery of lignite (brown coal) was the first in Victoria, which would bring important benefits to the region and state, both of which had previously been reliant on coal imports. In the 1860s, iron ore was found just 5km from Lal Lal, and the area was converted into an Iron Ore Mine. The Lal Lal Iron Mining Company took over operations in 1874, who then peaked iron production in 1884. This mine continued operations until June 1884, when the blast furnace was extinguished and never recommenced. The blast furnace at Lal Lal is considered one of the most important and highly significant sites ion early industrial history in Australia, as it is the only remaining best furnace from the nineteenth century in the Southern Hemisphere. The furnace ruins are 17 metres high, and are clearly visible today on Iron Mine Road, Lal Lal, near the Bungal Dam. This specimen of Lignite (brown coal) is significant, as it was mined from the area where brown coal was first discovered in Victoria, leading to an important and controversial future of the mining and use of brown coal in this State. The Victorian Heritage Database has listed the Lal Lal Coal Mine with local significance, with their Statement of Significance stating: "The Lal Lal coal mine is historically significant as the site of the first discovery of lignite (brown coal) in Victoria, and one that promised important benefits to regional and state industries that were reliant on coal imports at the time. The significance of the stie is reduced by the poor state of preservation of the coal mining and processing fabric". This specimen is part of a larger collection of geological and mineral specimens collected from around Australia (and some parts of the world) and donated to the Burke Museum between 1868-1880. A large percentage of these specimens were collected in Victoria as part of the Geological Survey of Victoria that begun in 1852 (in response to the Gold Rush) to study and map the geology of Victoria. Collecting geological specimens was an important part of mapping and understanding the scientific makeup of the earth. Many of these specimens were sent to research and collecting organisations across Australia, including the Burke Museum, to educate and encourage further study.A hand-sized light-weight, soft and combustable sedimentary rock specimen, that is dark brown in colour. The specimen has jagged edges, as though parts of the rock have crumbled away. Brown coal, or Lignite, is formed naturally from compressed peat, and is typically found in natural basins. The stages to the formation of coal ('coalification') begin with plant material and wood, which will decay if it is not subjected to deep burial or heating, and turn into Peat. Peat, when sufficiently compressed naturally, will turn into Brown Coal (Lignite), and finally into Black Coal (sub-bituminous, bituminous and anthracite). Each successive stage has a higher energy content and lower water content. It is brownish-black in colour. Brown Coal has a high moisture content, between 50 and 75 percent, and a low carbon content. Some Brown Coals may be stratified, with layers of plant matter, which means little coalification has occurred beyond the peat natural processing stage. When Brown Coal is submerged in dilute nitric acid or boiling potassium hydroxide solution, it reacts to produce a reddish solution, of which higher-ranked coals do not. When brown coal is pulverised and burned in boilers, the steam is used to drive turbines, which generates electricity. It is the lowest rank of coal, as when burned, it creates a relatively low heat content, which in turn does not create a great output of steam. burke museum, beechworth, indigo shire, beechworth museum, geological, geological specimen, mineralogy, brown coal, brown coal specimen, lignite, lal lal, lal lal coal mine, lal lal iron mine, ballarat, blast furnace -
Federation University Art CollectionPainting - Artwork - Painting, 'School of Mines New Beginnings part a & b' by John Collier, 2008
... John Collier also has significant success with lead-zinc, iron ore, coal, copper, gold-silver, petroleum, heavy minerals, nickel, uranium, industrial minerals, rare earths, and tin. ...John Collier also has significant success with lead-zinc, iron ore, coal, copper, gold-silver, petroleum, heavy minerals, nickel, uranium, industrial minerals, rare earths, and tin. ...John COLLIER (1937- 2012) John Collier was born at Ballarat in 1937. He received a Diploma of Mining and a Diploma of Civil Engineering at the Ballarat School of Mines (SMB), later graduating from the University of Melbourne with a Bachelor of Engineering (Mining). Early in his career he received a Diploma of Accountancy from the Australian Society of Accountants. Collier believes his experience at SMB had a profound influence on his life, especially what he learnt in Geology, Engineering, Chemistry, etc., all of which he found beneficial to his later working life and he is proud of that association. Through his experience in the world-wide mining industry John Collier has made a major impact on the mining industry. He has been exploration leader for a large number of worldwide discoveries and farm-ins both major and minor. He has experience in every facet of the mining industry, and his record in identifying diamond opportunities include Australian (Argyle), Canada (Diabik), Zimbabwe, and the Brazil Pipe (Collier Falls). His success in diamond exploration may be unparalleled. John Collier also has significant success with lead-zinc, iron ore, coal, copper, gold-silver, petroleum, heavy minerals, nickel, uranium, industrial minerals, rare earths, and tin. In 2006 John Collier was made a Legend in Mining by the Australian Mining Industry. Over his last 10 years, he had become a passionate painter, holding several successful solo exhibitions. His naive style featured beautiful and unexpected colour combinations. Many of his most lauded paintings depicted mining scenes, harking back to his Ballarat days. This item is part of the Federation University Art Collection. The Art Collection features over 2000 works and was listed as a 'Ballarat Treasure' in 2007.Two artworks by John Collier inspired by his alma mater, the Ballarat School of Mines. art, artwork, john collier, ballarat school of mines, alumni -
Federation University Art CollectionPainting - acrylic on canvas, Collier, John, 'Port Phillip Colonial GMC, Clunes' by John Collier, 2008
... John Collier also has significant success with lead-zinc, iron ore, coal, copper, gold-silver, petroleum, heavy minerals, nickel, uranium, industrial minerals, rare earths, and tin. ...John Collier also has significant success with lead-zinc, iron ore, coal, copper, gold-silver, petroleum, heavy minerals, nickel, uranium, industrial minerals, rare earths, and tin. ...John COLLIER (1937- 2012) John Collier was born at Ballarat in 1937. He received a Diploma of Mining and a Diploma of Civil Engineering at the Ballarat School of Mines (SMB), later graduating from the University of Melbourne with a Bachelor of Engineering (Mining). Early in his career he received a Diploma of Accountancy from the Australian Society of Accountants. Collier believes his experience at SMB had a profound influence on his life, especially what he learnt in Geology, Engineering, Chemistry, etc., all of which he found beneficial to his later working life and he is proud of that association. Through his experience in the world-wide mining industry John Collier has made a major impact on the mining industry. He has been exploration leader for a large number of worldwide discoveries and farm-ins both major and minor. He has experience in every facet of the mining industry, and his record in identifying diamond opportunities include Australian (Argyle), Canada (Diabik), Zimbabwe, and the Brazil Pipe (Collier Falls). His success in diamond exploration may be unparalleled. John Collier also has significant success with lead-zinc, iron ore, coal, copper, gold-silver, petroleum, heavy minerals, nickel, uranium, industrial minerals, rare earths, and tin. In 2006 John Collier was made a Legend in Mining by the Australian Mining Industry. Over his last 10 years, he had become a passionate painter, holding several successful solo exhibitions. His naive style featured beautiful and unexpected colour combinations. Many of his most lauded paintings depicted mining scenes, harking back to his Ballarat days. This work and subject matter was painted for the artist's alma mater, the Ballarat School of Mines (now Federation University Australia). This item is part of the Federation University Art Collection. The Art Collection features over 2000 works and was listed as a 'Ballarat Treasure' in 2007.Colourful acrylic on canvas painting depicting the Port Phillip Gold Mining Company, Clunes.art, artwork, john collier, port phillip cold mine, clunes, clunes, available, alumni, mining -
Puffing Billy RailwayV. R. Krupp 1888. IV. Rail, 1888
... To secure raw materials and feedstock for his production, Krupp acquires ore deposits, coal mines and iron works. On Alfred Krupp's death in 1887 the company employs 20,200 people. ...To secure raw materials and feedstock for his production, Krupp acquires ore deposits, coal mines and iron works. On Alfred Krupp's death in 1887 the company employs 20,200 people. ...60lbs rail that was used throughout the Victorian rail network. In 1887 Gibbs, Bright and Co. had a contract with Victorian Railways for railway and canal construction and supply of Krupp Rails. Gibbs, Bright and Co were merchant bankers and shipping agents and merchants who where also Directors of the GWR ( Great Western Railway ) and the Ship The "Great Britain" in England Gibbs, Bright and Company had principally been involved in shipping and trading, mainly in the West Indies, but following the discovery of gold in Victoria they established an office in Melbourne and soon became one of the leading shipping agents and merchants in the Colony. They expanded into passenger shipping and soon established offices in Brisbane, Sydney, Newcastle, Adelaide and Perth as well as launching passenger services between England, Mauritius and New Zealand. Gibbs, Bright also held a number of financial agencies from British mortgage, finance and investment companies as well as representing several British insurance companies in Australia. In addition they conducted a growing import business as well as an export business that included livestock, dairy produce, wool and flour. Also the company played a substantial part in the development of Australia's mineral resources, starting with lead in 1895, and later venturing into tin, gold, copper, cement and super phosphates. In Australia, after WWI, many of the larger companies were managing their own import and export so Gibbs, Bright and Company tended to focus its Agency business on smaller companies while expanding their interest into other markets such as timber, wire netting, zinc, stevedoring, road transport, marine salvage, gold mining as well as mechanical, structural, electrical and marine engineering. The Company's shipping interests continued to grow as well and still formed a major part of its business. In 1948 the parent company in England took the major step from tradition when they changed the business from a partnership into a private limited company. The name was the same, Antony Gibbs and Sons Limited, and in practice the effect of the change was very little. Some of the firm's branches and departments had already become limited companies and the formation of a parent company simplified the structure. The Australian operation was in time changed to Gibbs Bright & Co Pty Ltd in 1963. In 1848 Alfred Krupp becomes the sole proprietor of the company which from 1850 experiences its first major growth surge. In 1849 his equally talented brother Hermann (1814 - 1879) takes over the hardware factory Metallwarenfabrik in Berndorf near Vienna, which Krupp had established together with Alexander Schöller six years earlier. The factory manufactures cutlery in a rolling process developed by the brothers. Krupp's main products are machinery and machine components made of high-quality cast steel, especially equipment for the railroads, most notably the seamless wheel tire, and from 1859 to an increased extent artillery. To secure raw materials and feedstock for his production, Krupp acquires ore deposits, coal mines and iron works. On Alfred Krupp's death in 1887 the company employs 20,200 people. His great business success is based on the quality of the products, systematic measures to secure sales, the use of new cost-effective steel-making techniques, good organization within the company, and the cultivation of a loyal and highly qualified workforce among other things through an extensive company welfare system. From 1878 August Thyssen starts to get involved in processing the products manufactured by Thyssen & Co., including the fabrication of pipes for gas lines. In 1882 he starts rolling sheet at Styrum, for which two years later he sets up a galvanizing shop. The foundation stone for Maschinenfabrik Thyssen & Co. is laid in 1883 with the purchase of a neighboring mechanical engineering company. In 1891 August Thyssen takes the first step toward creating a vertical company at the Gewerkschaft Deutscher Kaiser coal mine in [Duisburg-]Hamborn, which he expands to an integrated iron and steelmaking plant on the River Rhine. Just before the First World War he starts to expand his group internationally (Netherlands, UK, France, Russia, Mediterranean region, Argentina). info from The company thyssenkrupp - History https://www.thyssenkrupp.com/en/company/history/the-founding-families/alfred-krupp.htmlHistoric - Victorian Railways - Track Rail - made by Krupp in 1888Section of VR Krupp 1888 Rail mounted on a piece of varnished wood. Rail made of ironpuffing billy, krupp, rail, victorian railways -
Flagstaff Hill Maritime Museum and VillageDomestic object - Stove, 1850-1890
... The first round cast-iron stoves with grates for cooking food on them were manufactured by Isaac Orr at Philadelphia, Pa., in 1800. The base-burning stove for burning anthracite coal was invented in 1833 by Jordan A. ...The first round cast-iron stoves with grates for cooking food on them were manufactured by Isaac Orr at Philadelphia, Pa., in 1800. The base-burning stove for burning anthracite coal was invented in 1833 by Jordan A. ...In the industrialized world, as stoves replaced open fires and braziers as a source of more efficient and reliable heating, models were developed that could also be used for cooking, and these came to be known as kitchen stoves. The first manufactured cast-iron stove was produced at Lynn, Mass., in 1642. This stove had no grates and was little more than a cast-iron box. About 1740 Benjamin Franklin invented the “Pennsylvania fireplace,” which incorporated the basic principles of the heating stove. The Franklin stove burned wood on a grate and had sliding doors that could be used to control the draft (flow of air) through it. Because the stove was relatively small, it could be installed in a large fireplace or used free-standing in the middle of a room by connecting it to a flue. The Franklin stove warmed farmhouses, city dwellings, and frontier cabins throughout North America. Its design influenced the development of the pot-bellied stove, which was a familiar feature in some homes well into the 20th century. The first round cast-iron stoves with grates for cooking food on them were manufactured by Isaac Orr at Philadelphia, Pa., in 1800. The base-burning stove for burning anthracite coal was invented in 1833 by Jordan A. Mott. The subject item is a mid to late 19th century settlers stove probably of Canadian manufacture imported into Australia around this time. The stove gives us a social snapshot into what life must have been like for our early colonialists using this device for heating and cooking in their meagre homes. Cast iron stove with four-legs, 2 plates on top and a hinged front door. The door has been cast with a maple leaf design and the sides have a pattern cast into them.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, stove, domestic heating, domestic cooking, heater, cooking unit, pot belly stove, wood fired stove, wood stove -
Flagstaff Hill Maritime Museum and VillageBinnacle, Early to mid 20th Century
... At this time sail had just given way to steam and wooden ships to steel, and the railways were competing with colliers for the carrying of coal from the North East of England to London and the South. In 1858 only seven out of 44 shipyards on the Tyne were using iron, but by 1862 there were ten, employing around 4,000 men. ...At this time sail had just given way to steam and wooden ships to steel, and the railways were competing with colliers for the carrying of coal from the North East of England to London and the South. In 1858 only seven out of 44 shipyards on the Tyne were using iron, but by 1862 there were ten, employing around 4,000 men. ...Mr John Wilson Gillie was born on the 31st of March 1864. On the 31st of July 1880 he was apprenticed for four years to J.J. Wilson and Sons, Nautical Instrument Makers of Sunderland. Following the apprenticeship he spent six months to a year as an ‘improver’ in Glasgow, and then started a new company ‘Wilson and Gillie’ in North Shields. At this time sail had just given way to steam and wooden ships to steel, and the railways were competing with colliers for the carrying of coal from the North East of England to London and the South. In 1858 only seven out of 44 shipyards on the Tyne were using iron, but by 1862 there were ten, employing around 4,000 men. These changes had a significant effect on nautical instrument manufacturers, as the magnetic compass for a wooden sailing vessel was very simple and required little in the way of compensation. For steel vessels much more was required and this was a period of great development, both in the compass bowl and the binnacle in which it was housed. In 1870 Sir William Thomson (later Lord Kelvin) designed his dry card standard compass, which completely replaced all previous designs. Wilson and Gillie started as agents for the Thomson compass, but later J.W. Gillie, using similar principles, redesigned the compass suspension and patented the ‘UNIT’ standard compass. It became popular with local shipowners and shipbuilders. In 1910 the firm of John Lilley and Son (which had been established in London in 1812), found themselves in financial difficulties and were saved with the help of John Wilson Gillie, who established, on the 8th of August 1911, a new firm of John Lilley and Son Limited. John Lilley and Son had been the sole London agents for Sir William Thomson, a very enviable position during this period, when the Thomson compass led the field. Unfortunately, Mr. Lilley had quarreled with the Glasgow company, who withdrew the agency and established their own branch in London (later to become Kelvin White and Hutton). On November 7th 1913, the firm of John Lilley and Son Limited of London amalgamated with Wilson and Gillie of North Shields, and after this date instruments manufactured by the two companies bore the name John Lilley and Son Limited of London and North Shields. During the 1930s many of the London nautical instrument makers were in difficulties, including John Lilley and Son Limited and Reynolds and Son, Dobbie and Clyde Limited, and Mr. J.W. Gillie arranged an amalgamation between these two companies. The new firm became Lilley and Reynolds Limited. In 1943, with estate duties in mind, the North Shields company was reconstituted and took the name of John Lilley and Gillie Limited, although the shareholders, directors and personnel remained unchanged In the early 1970s Lilley and Gillie developed close links with Observator in Rotterdam, who manufactured one of the first fully reliable transmitting magnetic compass systems. The Observator shareholders, Holland America Line, bought the share capital of John Lilley and Gillie Limited., but retained all the personnel and the directors. (See Links for more information)A significant item of early 20th century marine navigational equipment made by a leading manufacturer in the field from a company that is still producing marine navigational instruments today. John Lilleys company began in 1812 growing at a time when the transition of compasses from timber ships, to steel vessels. Compasses at this time required a method of compensation to allow their inclusion in steel vessels without magnetic deviation. This therefore was a period of great development, both in the compass bowl and the binnacle in which it was housed and the Lilley company were leaders in the field. Ships binnacle, wood with brass fittings, consists of 2 brass lamp holders, place for compass, Also has an inclinometer with a scale 40 to 0 to 40, one red and one green iron Kelvin compensation balls, one on each side of binnacle denoting port and starboard, a brass cylinder attached perpendicular at the rear for storing a Flinders Bar, 2 hinged cupboards containing adjustable wooden racks with drilled holes in them to hold iron Heeling error magnets.Textured brass plate attached to front stating "JOHN LILLEY & SON LTD (WILSON & GILLIE), NAUTICAL INSTRUMENT MAKERS, NORTH SHIELDS" . Inclinometer has "JOHN LILLEY & SON LTD (Wilson & Gillie) LONDON & NORTH SHIELDS" engraved. flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, binnacle, john lillie & son ltd, compass -
Federation University Historical CollectionBook, American Mine Accounting, 1913, 1913
... iron ore...mining native copper...mining copper ore...mining coal...Contents include: Minie Iron Ore; Mining and Milling Natice Copper; Mining Copper Ore; Mning Coal and Making Coke; Mining and Milling Gold Ore; Engineering and Geological Data. ...mining accounting economics america mining iron ore mining native copper mining copper ore mining coal\mining gold ore portland gold mining co cripple creek arizona mining co utah fuel co oliver iron co ojibway mining co Red hardcovered book of 367 pages including index. ...Red hardcovered book of 367 pages including index. Contents include: Minie Iron Ore; Mining and Milling Natice Copper; Mining Copper Ore; Mning Coal and Making Coke; Mining and Milling Gold Ore; Engineering and Geological Data. mining, accounting, economics, america, mining iron ore, mining native copper, mining copper ore, mining coal\mining gold ore, portland gold mining co, cripple creek, arizona mining co, utah fuel co, oliver iron co, ojibway mining co -
Federation University Historical CollectionBook, Ballarat School of Mines Students' Magazine, 1902-1906, 1902-1906
... iron...mt jukes excurson...western australian gold ore...wynne-grant furnace...bhp sintering slimes...leggo furnace...mine ventilation...mount morgan mine...mount pani ltd...new zealand coal...The Ballarat School of Mines is a predecessor institution of Federation University Ausgtralia. ballarat school of mines magazines sports committee thomas williams mount lyell w. pearce t. williams s. hepburn seward w. figgis j.r. reid p. elliott p.a. pratt n. buley john sutherland h.r murphy j. inglis r. nevett herbert l. krause broken hill artistic printing process hints on portraiture arizona cornish mining ausimm at the central mine, broken hill iron knob brown boveri turbo generator at block 10 junction mine plant or potter process broken hill propriety mill carlyon's hotel sam jamieson electrical labortory ballarat school of mines rowing eight sports committee, rowing on lake wendouree boat shed h. valentine l. seward c. macgennis d. don m. gaunt h. owne l. nott s. leathes j.a. reid h.r. murphy alfred mica smith r. hosking zeehan moonta wallaroo smelting silver south africa south australia excursion sunnyside woollen mills tasmanian excursion swedish iron mt jukes excurson western australian gold ore wynne-grant furnace bhp sintering slimes leggo furnace mine ventilation mount morgan mine mount pani ltd new zealand coal adelaide school of mines students' association at iron knob ausimm excursions visits South Australian Excursion Five copies of the Ballarat School of Mines Students' Magazine bound in a blue hard cover and quart bound in calf. 1902 - Retirement of Herbert L. ...The Ballarat School of Mines is a predecessor institution of Federation University Ausgtralia.Five copies of the Ballarat School of Mines Students' Magazine bound in a blue hard cover and quart bound in calf. 1902 - Retirement of Herbert L. Krause 1905 - Mt Lyall Ore Deposits Images: Ballarat School of Mines Sports Association Committee and Officers, 1905 Standing left to right: W. Pearce, T. Williams, S. Hepburn, Seward, W. Figgis, J.R. Reid, P. Elliott Sitting left to right: P.A. Pratt, N. Buley, John Sutherland, H.R Murphy, J. Inglis, R. Nevett 1906 Excursion to Broken Hill, The Artistic Printing Process, Hints on Portraiture, Arizona, Cornish Mining Images Ballarat School of Mines and AusImm at the Central Mine, Broken Hill; At Iron Knob, Brown Boveri Turbo Generator at Block 10, Junction Mine plant or Potter Process, Broken Hill Propriety Mill, Carlyon's Hotel, Sam Jamieson, Electrical Labortory, Ballarat School of Mines Rowing Eight, Sports Committee,ballarat school of mines, magazines, sports committee, thomas williams, mount lyell, w. pearce, t. williams, s. hepburn, seward, w. figgis, j.r. reid, p. elliott, p.a. pratt, n. buley, john sutherland, h.r murphy, j. inglis, r. nevett, herbert l. krause, broken hill, artistic printing process, hints on portraiture, arizona, cornish mining, ausimm at the central mine, broken hill, iron knob, brown boveri turbo generator at block 10, junction mine plant or potter process, broken hill propriety mill, carlyon's hotel, sam jamieson, electrical labortory, ballarat school of mines rowing eight, sports committee,, rowing on lake wendouree, boat shed, h. valentine, l. seward, c. macgennis, d. don, m. gaunt, h. owne, l. nott, s. leathes, j.a. reid, h.r. murphy, alfred mica smith, r. hosking, zeehan, moonta, wallaroo, smelting silver, south africa, south australia excursion, sunnyside woollen mills, tasmanian excursion, swedish iron, mt jukes excurson, western australian gold ore, wynne-grant furnace, bhp sintering slimes, leggo furnace, mine ventilation, mount morgan mine, mount pani ltd, new zealand coal, adelaide school of mines, students' association, at iron knob, ausimm, excursions, visits, south australian excursion -
Flagstaff Hill Maritime Museum and VillageInstrument - Barometer, 1952
... At this time sail had just given way to steam and wooden ships to steel, and the railways were competing with colliers for the carrying of coal from the North East of England to London and the South. In 1858 only seven out of 44 shipyards on the Tyne were using iron, but by 1862 there were ten, employing around 4,000 men. ...At this time sail had just given way to steam and wooden ships to steel, and the railways were competing with colliers for the carrying of coal from the North East of England to London and the South. In 1858 only seven out of 44 shipyards on the Tyne were using iron, but by 1862 there were ten, employing around 4,000 men. ...Mr John Wilson Gillie was born on the 31st of March 1864. On the 31st of July 1880 he was apprenticed for four years to J.J. Wilson and Sons, Nautical Instrument Makers of Sunderland. Following the apprenticeship he spent six months to a year as an ‘improver’ in Glasgow, and then started a new company ‘Wilson and Gillie’ in North Shields. At this time sail had just given way to steam and wooden ships to steel, and the railways were competing with colliers for the carrying of coal from the North East of England to London and the South. In 1858 only seven out of 44 shipyards on the Tyne were using iron, but by 1862 there were ten, employing around 4,000 men. These changes had a significant effect on nautical instrument manufacturers, as the magnetic compass for a wooden sailing vessel was very simple and required little in the way of compensation. For steel vessels much more was required and this was a period of great development, both in the compass bowl and the binnacle in which it was housed. In 1870 Sir William Thomson (later Lord Kelvin) designed his dry card standard compass, which completely replaced all previous designs. Wilson and Gillie started as agents for the Thomson compass, but later J.W. Gillie, using similar principles, redesigned the compass suspension and patented the ‘UNIT’ standard compass. It became popular with local shipowners and shipbuilders. In 1910 the firm of John Lilley and Son (which had been established in London in 1812), found themselves in financial difficulties and were saved with the help of John Wilson Gillie, who established, on the 8th of August 1911, a new firm of John Lilley and Son Limited. John Lilley and Son had been the sole London agents for Sir William Thomson, a very enviable position during this period, when the Thomson compass led the field. Unfortunately, Mr. Lilley had quarreled with the Glasgow company, who withdrew the agency and established their own branch in London (later to become Kelvin White and Hutton). On November 7th 1913, the firm of John Lilley and Son Limited of London amalgamated with Wilson and Gillie of North Shields, and after this date instruments manufactured by the two companies bore the name John Lilley and Son Limited of London and North Shields. During the 1930s many of the London nautical instrument makers were in difficulties, including John Lilley and Son Limited and Reynolds and Son, Dobbie and Clyde Limited, and Mr. J.W. Gillie arranged an amalgamation between these two companies. The new firm became Lilley and Reynolds Limited. In 1943, with estate duties in mind, the North Shields company was reconstituted and took the name of John Lilley and Gillie Limited, although the shareholders, directors and personnel remained unchanged In the early 1970s Lilley and Gillie developed close links with Observator in Rotterdam, who manufactured one of the first fully reliable transmitting magnetic compass systems. The Observator shareholders, Holland America Line, bought the share capital of John Lilley and Gillie Limited., but retained all the personnel and the directors. Tug Melbourne: The barometer was salvaged from a 496-ton tug that had been built in 1952 and had sunk in Port Philip Bay on the 9th of August 1972 after a collision with the SS Nieuw Holland, in 1973 it had been raised and scraped at this time the barometer was salvaged. The tug had been renamed from the Howard Smith to the “Melbourne” after the Adelaide Steamship Co was taken over by Howard Smith& Co, who were heavily involved in towage, salvage and the stevedoring industries in 1961.The significance is that the item was on a vessel that was evolved in a serious collision in Port Philip Bay in 1972. It is linked with the activities of the Port at that time and helps to form a picture of what the maritime industries that operated from Port Melbourne were like and the activities that stevedore and towage companies underwent.Ship Barometer, in brass caseInscribed "Compensated" , "John Lilley & Gillie Ltd London & North Shields." and "Millibars".flagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, barometer, ship's barometer, weather instrument, john lilley & gillie ltd, shipwreck artefact, the tigboat melbourne, north shields, howard smith, the melbourne, salvage -
Flagstaff Hill Maritime Museum and VillageDomestic object - Stove, Cox and Rizzetti Stove Works, ca. 1918-1930s
... Cast iron stoves burn solid fuel such as wood or coal, and are used for cooking and warmth. ...Cast iron stoves burn solid fuel such as wood or coal, and are used for cooking and warmth. ...Cast iron stoves burn solid fuel such as wood or coal, and are used for cooking and warmth. The stoves have a firebox with a grate where the fuel is burned. The hot air flows through flues and baffles that heat the stove top and the oven. Before cast iron stoves were invented, cooking and heating were carried out in outdoor open fires, and later, in fireplaces inside the home. In 1642 the first cast iron stove was manufactured in Lynn, Massachusetts, where molten cast iron was poured into a sand mould to make rectangular plates that were then joined together to make a box. Benjamin Franklin invented the more efficient Pennsylvania stove in 1744, and this efficient design is still used today. After the mid-19th century cast iron stoves were produced with burners in different positions, giving varied temperatures, so a wide variety of foods could be cooked at the same time at the most suitable heat, from slow cooking to baking scones. In contemporary times people the new wood-burning stoves had to meet the anti-pollution standards now in place to protect our environment. By the 1920s gas cookers were being introduced for domestic use, and by the 1930s electric home cookers were being offered to householders. PLANET STOVES In August 1925 the firm Cox and Rizzetti, Stove Works, and also Sydney Road, South Melbourne, advertised in the Brunswick and Coburg Leader of November 11, 1925 as "formerly with Harnwell and Sons" and as "specialists in solid cast iron Planet stoves ... which merit an inspection from builders and householders". The firm continued in business and was mentioned as sponsors in the King Island News in 1971. Harnwell and Sons was listed in the Victorian Government Gazette of 1894. It is curious that the firm was mentioned in an article in the Sunrasia Daily of June 14, 1934 titled 'Planet Stoves' as a manufacturer of Planet Stoves. This Planet No 3 stove is an uncommon example of cooking equipment used in kitchens in the early 20th century, as the firebox is above the oven rather than beside it. The cast iron combustion stove is significant as part of the evolution of domestic cooking. Previously cooking was mostly carried out in outdoors in open fires, and later in fireplaces indoors. Cast iron stoves are still used today and have additional features such as thermostats to monitor and maintain temperature, water heating pipes connected, and environmentally approved anti-pollution fittings. Stove; a compact, blackened cast iron combustion cooker, installed within a fireplace and enclosed by bricks on both sides. The upright rectangular stove has a flat top with three round, removable cook plates and a flue connected at the back. The front has three doors with round knob handles; a swing-down firebox door above a sliding ashtray, and two side-hinged oven doors above a sliding opening. Inside on the side walls are two pairs of runners. Behind the pair of doors is an oven with two pairs of rails and two removable metal shelves. The stove has cast inscriptions on the chimney flue and on the front of the right hand side stove door. The model of the stove is The Planet No 3, made in Melbourne.Chimney flue, "[within rectangle] THE / PLANET" Stove door, "(within oval) PLANET / No 3"flagstaff hill, flagstaff hill maritime museum and village, warrnambool, maritime museum, maritime village, great ocean road, shipwreck coast, stove, cast iron stove, combustion stove, wood-burning stove, wood stove, wood oven, solid fuel stove, cooker, the planet, planet, planet no. 3, kitchen equipment, baking, domestic cooking, cooking equipment, food preparation, planet stove, planet cooker, cooking range, slow combustion stove, antique, range cooker, cox and rizzetti, harnwell and sons, melbourne manufacturer -
Flagstaff Hill Maritime Museum and VillageDomestic object - Iron
... Two of the oldest sorts of iron were either containers filled with a burning substance, or solid lumps of metal which could be heated directly. Metal pans filled with hot coals...Two of the oldest sorts of iron were either containers filled with a burning substance, or solid lumps of metal which could be heated directly. Metal pans filled with hot coals ...Before the introduction of electricity, irons were heated by combustion, either in a fire or with some internal arrangement. An "electric flatiron" was invented by American Henry Seely White and patented on June 6, 1882. It weighed almost 15 pounds (6.8 kg) and took a long time to heat. The UK Electricity Association is reported to have said that an electric iron with a carbon arc appeared in France in 1880, but this is considered doubtful. Two of the oldest sorts of iron were either containers filled with a burning substance, or solid lumps of metal which could be heated directly. Metal pans filled with hot coals were used for smoothing fabrics in China in the 1st century BC. A later design consisted of an iron box which could be filled with hot coals, which had to be periodically aerated by attaching a bellows. In the late nineteenth and early twentieth centuries, there were many irons in use that were heated by fuels such as kerosene, ethanol, whale oil, natural gas, carbide gas (acetylene, as with carbide lamps), or even gasoline. Some houses were equipped with a system of pipes for distributing natural gas or carbide gas to different rooms in order to operate appliances such as irons, in addition to lights. Despite the risk of fire, liquid-fuel irons were sold in U.S. rural areas up through World War II. In Kerala in India, burning coconut shells were used instead of charcoal, as they have a similar heating capacity. This method is still in use as a backup device, since power outages are frequent. Other box irons had heated metal inserts instead of hot coals. From the 17th century, sadirons or sad irons (from Middle English "sad", meaning "solid", used in English through the 1800s[4]) began to be used. They were thick slabs of cast iron, triangular and with a handle, heated in a fire or on a stove. These were also called flat irons. A laundry worker would employ a cluster of solid irons that were heated from a single source: As the iron currently in use cooled down, it could be quickly replaced by a hot one. https://en.wikipedia.org/wiki/Clothes_ironThis iron is typical of the clothes iron used before electric irons superseded it.Salter iron no. 6, painted black but with rust showing through. Salter iron no. 6.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, iron, clothes, laundry -
Mission to Seafarers VictoriaJournal (item) - Periodicals-Annual, Shiplovers' Society of Victoria, The Annual Dog Watch
... - Pamela Eriksson - 23 Iron Pacific -- Australia's Flagship - - 26 Square Rigger -- Chip Barge - W.P. Shemmeld - 33 Diary of a Ship's Surgeon Part 1 -- Outward Bound - H.M. Lightroller M.R.C.S. -37 My Coal...- Pamela Eriksson - 23 Iron Pacific -- Australia's Flagship - - 26 Square Rigger -- Chip Barge - W.P. Shemmeld - 33 Diary of a Ship's Surgeon Part 1 -- Outward Bound - H.M. Lightroller M.R.C.S. -37 My Coal ...This journal provides the reader with glimpses of the adventures and hardships of a seaman's life. Many of the stories are of sailing ships.Contributes to our knowledge of the importance of shipping and places on record those stories of the sea which would otherwise be lost.Contents Joyce Lambert Memorial - - 4 Editorial - Tol. E. Goldfinch- 5 Foreword - Capt. Peter Richardson - 7 The Challenge of Change - Late Joyce M.B. Lambert - 8 Tall Ships Australia. 1988. - - 21 Why Do We Love Ships? - Pamela Eriksson - 23 Iron Pacific -- Australia's Flagship - - 26 Square Rigger -- Chip Barge - W.P. Shemmeld - 33 Diary of a Ship's Surgeon Part 1 -- Outward Bound - H.M. Lightroller M.R.C.S. -37 My Coal Burning Warship - Rev. H.W. Coffey, MBE. MA. - 49 Sage of H.M.A.V. Bounty -- New Zealand to Tahiti 1984 - Tony Crowder - 55 The Heldia Song - K. Shewan-58 The Everchanging Inside Passage -- British Columbia - B.D. Weston - 61 Longitude -- Zero - S.J.Buckland - 66 The Lost Anchor - - 73 Origin of the Sea Shanty - P.R. Swensen - 78 Port of London Recollections - - 80 Redoubtable Capt. Schutt - Late Captain F. Klebingat - 82 Capt. Frederick Klebingat Remembered - - 84 Grounding of M.V. Kanimbla - F.B. Finch - 86 "Through the Hawsepipe" - Late Capt. H.R. Watson - 91 Caribbean Capsize - Lloyd Barber - 95 Dogwatch Miscellany - - 102 Shipping Advertisements - - 105 Future Beacons - K. Shewan - 107 Williamstown -- The Destination of Many Early Arrivals - 109 Book Reviews - - 113sailing ships, steamships, shipping, seafaring life, shiplovers' society of victoria, dog watch, p.r.swensen, sea shanty -
Federation University Historical CollectionBook, New York Post, The School of Mine Quarterly: A Journal of Applied Science, 1889-1809
... The School of Mines Quarterly was a jpournal of Applied Science from Columbia College, New York City. school of mines new york columbia college schools of mines columbia school of mines Witwatersrand Goldfield INter-continental Railway Mine Ropes Harbor improvememnts on the Pacific coast Glycerine and artificial Butter industry Transit Factors for teh Columbia College Observatory Tables for the Reducation of Transit Observations Ancienct methods for dividing and Recoording time in Japan Assay of tin John Strong Newberry Standards of linnear Measure Comparison of costs of electric lighting Huanchaca Mine Bolivia El Callao Gold Mine Venezuela John Magnus Adams Ores in Saxony Hartz and Rhenish Prussia Hofmann Apparatus Adjustment of Trangulation Determination of Carbonic Acid in White Lead Lower Coals in Western Clearfield County Pennsylvania Old Telegraph Mine Ningham Canon Utah mechanical Preparation of Ores modern waterworks construction curdling of milk French regenerative gas furnace Irrication Canals peruvian salt mine Collection of Metallurgic Dust and fume Permeability of iron and steel Assay of Silver Explosion in a Zinc Fume condenser Teaching archtectural history Liquid air between the mine and the smelter Ballistic Galvonometer Assay of Telluride ores Analytical Chemistry Theory and design of the masonry arch silver pick mine Wilson colorado telegraphy and telephoney mineralogy morse code Michigan mining practices Titaniferous magnetites paradox of the pantheon Rocks from Wyoming Witwatersrand goldfields Gaseous sun Alternating current distribution Engineering tests on direct current Electrical Machinery Thomas Egleston Ore dressing Frederick Morgan Watson Camp Bird Gold Mine and Mills Magnetic properties of Iron and Steel Morphology of Organic compounds Antimony structure of the Starch Molecule Cerrillos Hills New Mexico geology Rossie Lead Veins practical electrochemistry lines of graphic statics Anistic Acid by the ozidation of Anniseed Oil Bromate method for antimony John Krom Rees Trust company of America Building Helion lamp Frederick Arthur Goetze Mine Surveying Pine Wood Oils Malleable Cast iron Electrolytic treatment of Galena turpentine and pine oils Bluestone Ashokan Dam bluestone road resistances Oxy-gas blowtorch Mine dumps segregation of steel ingots masonry dam formulas putnam county magnetic belts gases Continuity of education Hydraulic diagrams standardistion of Potassium permanganate Sewerage Discharge into Sea Water Modern waterworks True Column formula Slags from lead furnaces missouri river tempreture of gases rocks architectural history Modern dome oil machine undulations in railway tracks Irrigation engineering Cleps-tachymeters Electrical Engineering New York Shales fan pump Sucrose Isaac Newton French school of anstronomers Electrolytic polarization Benjamin bowden lawrence diamond drilling New York Ciy Water Front Engineering profession ethics The Index to the School of Mines Quarterlu Volumes X1-XX (1900) and 32 green covered journals The School of Mine Quarterly: A Journal of Applied Science Book New York Post ...The School of Mines Quarterly was a jpournal of Applied Science from Columbia College, New York City.The Index to the School of Mines Quarterlu Volumes X1-XX (1900) and 32 green covered journals school of mines, new york, columbia college, schools of mines, columbia school of mines, witwatersrand goldfield, inter-continental railway, mine ropes, harbor improvememnts on the pacific coast, glycerine and artificial butter industry, transit factors for teh columbia college observatory, tables for the reducation of transit observations, ancienct methods for dividing and recoording time in japan, assay of tin, john strong newberry, standards of linnear measure, comparison of costs of electric lighting, huanchaca mine bolivia, el callao gold mine venezuela, john magnus adams, ores in saxony, hartz and rhenish prussia, hofmann apparatus, adjustment of trangulation, determination of carbonic acid in white lead, lower coals in western clearfield county pennsylvania, old telegraph mine ningham canon utah, mechanical preparation of ores, modern waterworks construction, curdling of milk, french regenerative gas furnace, irrication canals, peruvian salt mine, collection of metallurgic dust and fume, permeability of iron and steel, assay of silver, explosion in a zinc fume condenser, teaching archtectural history, liquid air, between the mine and the smelter, ballistic galvonometer, assay of telluride ores, analytical chemistry, theory and design of the masonry arch, silver pick mine wilson colorado, telegraphy and telephoney, mineralogy, morse code, michigan mining practices, titaniferous magnetites, paradox of the pantheon, rocks from wyoming, witwatersrand goldfields, gaseous sun, alternating current distribution, engineering tests on direct current electrical machinery, thomas egleston, ore dressing, frederick morgan watson, camp bird gold mine and mills, magnetic properties of iron and steel, morphology of organic compounds, antimony, structure of the starch molecule, cerrillos hills new mexico, geology, rossie lead veins, practical electrochemistry, lines of graphic statics, anistic acid by the ozidation of anniseed oil, bromate method for antimony, john krom rees, trust company of america building, helion lamp, frederick arthur goetze, mine surveying, pine wood oils, malleable cast iron, electrolytic treatment of galena, turpentine and pine oils, bluestone, ashokan dam bluestone, road resistances, oxy-gas blowtorch, mine dumps, segregation of steel ingots, masonry dam formulas, putnam county magnetic belts, gases, continuity of education, hydraulic diagrams, standardistion of potassium permanganate, sewerage discharge into sea water, modern waterworks, true column formula, slags from lead furnaces, missouri river, tempreture of gases, rocks, architectural history, modern dome, oil machine, undulations in railway tracks, irrigation engineering, cleps-tachymeters, electrical engineering, new york shales, fan pump, sucrose, isaac newton, french school of anstronomers, electrolytic polarization, benjamin bowden lawrence, diamond drilling, new york ciy water front, engineering profession ethics -
Federation University Historical CollectionBook, The MIneral Industry its Statistics, Technology and Trade in the United States and Other Countries 1893
... Used at the Ballarat School of Mines Mining statistics technology trades metal industry minerals united states canada china france germany italy japan russia south america spain sweden united kingdom ireland coins Cuba blast furnaces Gold Lead production Manganese opals silver + alumite antinomy cobalt coke copper ore iron lead limestone flux managanese shale silver-lead tin zinc This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc Lead production Manganese opals Red hard cloth covered book of 115 pages. ...This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc Lead production Manganese opalsRed hard cloth covered book of 115 pages. INcludes contentsnon-fictionThis volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc Lead production Manganese opals mining, statistics, technology, trades, metal industry, minerals, united states, canada, china, france, germany, italy, japan, russia, south america, spain, sweden, united kingdom, ireland, coins, cuba, blast furnaces, gold, lead production, manganese, opals, silver, +, alumite, antinomy, cobalt, coke, copper ore, iron, lead, limestone flux, managanese, shale, silver-lead, tin, zinc -
Federation University Historical CollectionBook, The MIneral Industry its Statistics, Technology and Trade in the United States and Other Countries 1898
... Used at the Ballarat School of Mines Mining statistics technology trades metal industry minerals united states canada china france germany italy japan russia south america spain sweden united kingdom ireland coins Cuba blast furnaces Gold Lead production Manganese opals silver + alumite antinomy cobalt coke copper ore iron lead limestone flux managanese shale silver-lead tin zinc abrasives chemical industry gems precious stones This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc Lead production Manganese opals Red hard cloth covered book of 984 pages. ...This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc Lead production Manganese opalsRed hard cloth covered book of 984 pages. Includes contents and index.non-fictionThis volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc Lead production Manganese opals mining, statistics, technology, trades, metal industry, minerals, united states, canada, china, france, germany, italy, japan, russia, south america, spain, sweden, united kingdom, ireland, coins, cuba, blast furnaces, gold, lead production, manganese, opals, silver, +, alumite, antinomy, cobalt, coke, copper ore, iron, lead, limestone flux, managanese, shale, silver-lead, tin, zinc, abrasives, chemical industry, gems, precious stones -
Federation University Historical CollectionBook, The MIneral Industry its Statistics, Technology and Trade in the United States and Other Countries 1899
... Used at the Ballarat School of Mines Mining statistics technology trades metal industry minerals united states canada china france germany italy japan russia south america spain sweden united kingdom ireland coins Cuba blast furnaces Gold Lead production Manganese opals silver + alumite antinomy cobalt coke copper ore iron lead limestone flux managanese shale silver-lead tin zinc abrasives chemical industry gems precious stones This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc Red hard cloth covered book of 982 pages. ...This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zincRed hard cloth covered book of 982 pages. Includes contents and index.non-fictionThis volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc mining, statistics, technology, trades, metal industry, minerals, united states, canada, china, france, germany, italy, japan, russia, south america, spain, sweden, united kingdom, ireland, coins, cuba, blast furnaces, gold, lead production, manganese, opals, silver, +, alumite, antinomy, cobalt, coke, copper ore, iron, lead, limestone flux, managanese, shale, silver-lead, tin, zinc, abrasives, chemical industry, gems, precious stones -
Federation University Historical CollectionBook, The MIneral Industry its Statistics, Technology and Trade in the United States and Other Countries 1901
... Used at the Ballarat School of Mines Mining statistics technology trades metal industry minerals united states canada china france germany italy japan russia south america spain sweden united kingdom ireland coins Cuba blast furnaces Gold Lead production Manganese opals silver + alumite antinomy cobalt coke copper ore iron lead limestone flux managanese shale silver-lead tin zinc abrasives chemical industry gems precious stones quicksilver rare elements silica slate\ This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc. ...This volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc. Australasian co.Red hard cloth covered book of 986 pages. Includes contents and index.non-fictionThis volume includes Australasia, and lists each state seperately , as well as New Zealand, It also lists Bismoth, Chome iron ore, coal, copper, gold, lead, mineral industry growth, alumite, antinomy, cobalt, coke, copper ore, gold, iron, lead, limestone flux, managanese, shale, silver, silver-lead, tin and zinc. Australasian co. mining, statistics, technology, trades, metal industry, minerals, united states, canada, china, france, germany, italy, japan, russia, south america, spain, sweden, united kingdom, ireland, coins, cuba, blast furnaces, gold, lead production, manganese, opals, silver, +, alumite, antinomy, cobalt, coke, copper ore, iron, lead, limestone flux, managanese, shale, silver-lead, tin, zinc, abrasives, chemical industry, gems, precious stones, quicksilver, rare elements, silica, slate\
