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Further Progress in Production and Use of High-Grade Zinc-Oxide Situation InterestingBy Frank G. Breyer
THE .following developments in the zinc field during 1935 are listed in the order of their importance. Each will he amplified in later paragraphs. In the field o f Metallic Zinc: (1) Construction of
Jan 1, 1936
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Further Progress Made in Mechanization of Bituminous MiningBy G. C. Trevorrow
STRIP mining during 1943 increased considerably with further extension of mechanical loading in mines already partly mechanized; with the considerable introduction of mechanical loading into hand-load
Jan 1, 1944
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Further Studies on Acid Pressure Leaching a Chalcopyrite-Pentlandite-Pyrrhotite ConcentrateBy J. A. Vezina
The effects of particle size distribution on metal extraction have been determined from pressure leaching Renzy Mines Limited concentrate with oxygen. Using a pulp density of 30 per cent solids, an ox
Jan 1, 1973
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Further Studies On Relating The Breakage Properties Of Coal Bore Cores To Preparation Plant Feed (782c3ebc-fc62-4978-be90-da405354173d)By T. E. Wilson
An exploration bore core sample of coal ought to be reduced from its original cylindrical form to a particle size distribution and particle composition that reflects, insofar as possible, a process st
Jan 1, 1998
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Fused Salt Electrorefining of ZincBy Kelly J. Driscoll
Impure zinc (98.5%) was electrorefined to high purity zinc (99.995%) using a fused salt electrolyte of molar composition 1: 1 : 1 :2 ZnCI2:KCl:NaCl:LiCl with a current efficiency of about 90% at 723 K
Jan 1, 1992
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Fusion Anomaly During Roasting of Copper SulfideBy I. D. Shah
A roasting procedure for synthetic copper sulfide which results in a reproducible transient melting at 450° and 470°C is described in this paper. Possible causes for this melting phenomenon are sugges
Jan 1, 1976
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Fusion of molten phase R&D into the metallurgical industry to drive circularityBy S L. Nicol, B J. Hogg, O J. Mendoza, S Nikolic, A Burrows
The top submerged lance (TSL) technology, developed in the 1970s, is now widely used for the processing of a range of materials. The key advantage the ISASMELT™ TSL technology provided was the ability
Aug 21, 2024
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Future career considerations in the mineral industryBy D. W. Gentry
Introduction Until recently, there were many jobs for mineral engineering graduates. Traditionally, minerals-related career paths available to university graduates stem from rather standard offerings
Jan 2, 1985
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Future Changes in the Physico-Chemistry of Zinc-ElegtrowinningBy A. von Röpenack
A forecast of the consequences of our techniques and goods produced, at least a technical assessment will be demanded from us as an industry. The hydrometallurgical winning of zinc is therefore at a
Jan 1, 1990
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Future Climate – Is Heat Stress a Real Risk for the Future and How Can We Better Manage It?By C Killip
Working in Australia’s harsh climate can have a significant impact on the health, safety and productivity of our teams, but is our working environment expected to be more prone to heat stress in the f
Nov 4, 2015
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Future Configurations of High Output Longwall FacesBy M. R. Stokes
Over the recent years there has been an increase in the application of retreat mining on longwall faces as mine operators strive for ever greater productivity. The purpose of this paper in then to rev
Jan 1, 1997
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Future Demand For MetalsBy Foster Bain
THE outstanding characteristic of the last hundred years has been the world-wide rise in the standard of living. Man's dominion over nature is increasing with an accelerating pace and more and mo
Jan 10, 1926
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Future Developments in Underground Mobile EquipmentRecent developments in engine, transmission and control technology, likely to give rise to improved performance and efficiency of underground mobile equipment, are reviewed. Turbocharging and the elec
Jan 1, 1985
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Future Direction of Mining Related Education in Australia: The Road to SuccessThis talk was delivered in Kalgoorlie in April this year, to the Kalgoorlie Branch of The Institution of Engineers, Australia. We believe it is of such interest to members of our Institute and readers
Jan 1, 1987
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Future Directions in Ground Vibration and Airblast Control within an Australian Regulatory ContextBy A Brodbeck, AT Spathis
Australian regulatory control of ground vibration and airblast arising from mining, quarrying and civil construction operations is spread across a number of federal, state and local authorities and ac
Jan 1, 2005
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Future Economics Of Metal ProductionBy George Collins
AT the meeting of the Western Division of the American Mining Congress, held in Denver last September, papers were read by F. H. Brownell, a vice-president of the American Smelting and Refining Co. an
Jan 6, 1927
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Future Needs In Site StudyBy Lloyd B. Underwood
Dr. Gardener, in Chapter 2, has presented a comprehensive state-of-the- art review of site investigations For tunneling. Nearly all of the techniques he discussed will also be required for future site
Jan 1, 1970
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Future of Coal for Railway FuelBy Eugene McAuliffe
AS anthracite is no longer used to a marked extent by the rail- ways of the United States (1,513,000 tons in 1933), that portion of the mining industry engaged in the production of bituminous coal is,
Jan 1, 1936
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Future Of Copper Converting Process (Keynote) (b189ca47-e072-4ce9-8314-82beecbcaa29)By Yasuo Ojima
The mainstream of copper smelting processes in the world today is a combination of Outokumpu type Flash smelting and PS (Pierse Smith) converting process. Presently it can be estimated that about 50%
Jan 1, 2003
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Future of Mineral Processing Education (XXII International Mineral Processing Congress )By James A. Finch
"Developed countries are in the midst of re-structuring education in minerals-related disciplines as raw materials, once vital to wealth generation, contribute progressively less to the economy. The c
Jan 1, 2003