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Production Of Lightweight Aggregate From Waste Materials (ee2a87da-befe-4bad-915f-b20cc6432f6f)By M. H. Weinecke, B. P. Faulkner
This paper will discuss the process for making lightweight aggregate, the waste materials that make good lightweight aggregate, the chemistry of making lightweight aggregate and finally a discussion o
Jan 1, 2001
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Production of Low-Ash Coking Coal by Tabling, with Special Reference to U. S. PracticeBy C. H. Tiernon
"This paper was' prepared to emphasize the part that coal washing tables can play in the development of many of the reserves of coking coals in Western Canada_ It covers a brief history of the develop
Jan 1, 1973
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Production Of Magnesium By The Carbothermic Process At PermanenteBy T. A. Dungan
THE thermal processes for the production of metallic magnesium can be divided into two general classifications, the direct reduction of magnesia with carbon and the indirect reduction of compounds of
Jan 1, 1944
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Production Of Magnetic Superconcentrates By Cationic FlotationBy Robert B. Tippin
A number of recent studies 1-4 suggest that steelmaking expansion might be achieved more economically by a combination of the prereduction furnace and the electric steelmaking furnace rather than thro
Jan 1, 1971
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Production of Molybdenum Containing Iron Based Alloys via Metallothermic ProcessesBy Dilek Kirgöz, Onuralp Yücel, Murat Alkan
"In this study, Mo containing Fe-based alloys, such as Fe-Ni-Cr-Mo, were synthesized using a mixture of Fe203-NiO-Cr203-Mo03 powders reducing with Al powders by metallothermic process which is a high
Jan 1, 2013
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Production of molybdenum disilicide using a silicon-containing molten bath via the hot dipping methodBy H Fukaya T Miki, J Gamutan
Molybdenum disilicide (MoSi2) is a promising material for thermal applications due to its excellent heat and oxidation resistance. It can operate at temperatures of up to 1800°C as furnace heating ele
Jun 19, 2024
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Production of Nickel Bearing Pig Iron in Blast Furnace From Chromite OverburdenBy Kumar A, Mishra N. C
For each tonne of chromite ore mined in Sukinda, approximately ten tonnes of fine overburden material is generated. The overburden typically contains about 30 - 60 per cent Fe2O3, 0.3 - 1.1 per cent
Jan 1, 1999
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Production of Nickel Oxide From Ammoniacal Process StreamsBy G. C. Nowlan, A. Illis, H. J. Koehler
At its iron ore recovery plant at Copper Cliff, INCO produces about 17 million pounds per year of a pure, acid-soluble, dense nickel oxide from nickeliferous pyrrhotite. The process used is also appli
Jan 1, 1970
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Production of Ornamental Compound Marble with Marble Waste and Unsaturated PolyesterBy Carlos M. Fontes Vieira, Ruben J. Sanchez Rodriguez, Carlos E. Gomes Ribeiro
"The worldwide demand for ornamental stones in building construction is motivating the use of their wastes, generated during fabrication, to produce compound stones. This work has as its objective to
Jan 1, 2014
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Production of Partially Separated Rare Earth Elements (REE) from a Quebec DepositBy Jean-François Boulanger
The production of rare earth elements from ore usually consists of three steps; the separation of a concentrate of REE bearing minerals; the cracking of the REE minerals to liberate the REE into an aq
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Production of Paste from Total Tails in a Deep Cone Thickener A Case StudyBy Gregg Hodges, Fred Schoenbrunn, Steve Slottee, Chad McCleary
"In December, 1999 Stillwater Mining Company (SMC) commissioned a new paste /cement backfill plant to supplement the existing sand backfill system for the cut and fill mining operation at it’s Nye, Mo
Jan 1, 2001
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Production of Phosphate Concentrates from Slimes: Brazilian ExperienceBy Rogerio C. Guimarães, Antonio E. C. Peres
The production of phosphate concentrates (phosphate rock) from slimes represents a challenge to the phosphate industry worldwide. In Brazil, this challenge is particularly relevant due to the consiste
Jan 1, 2003
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Production Of Premium Fuels From Coal Refuse Pond Material (2aa71a6b-2d92-4fae-bb5e-adfc6c248880)By R. Q. Honaker, D. P. Patil, A. Sirkeci
Due to increased production of fine coal during mining during this century and inefficient fine coal recovery technologies, a vast reserve of high quality coal currently exists in refuse ponds. A nove
Jan 1, 2000
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Production of Purified Lithium Salts with a One-Stage Solid Phase ExtractionBy R. Hammen
Processes are needed to rapidly and cost-effectively produce highly pure lithium salts for the rechargeable battery sector. Lithium purification is a chemical engineering challenge, due to the low con
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Production Of Rare Earth Ferrosilicide AlloyBy Yavuz Ali Topkaya
Rare earth ferrosilicide is a versatile alloy mainly used to control the detrimental effects of sulfur in steel and to modify graphite structures in cast iron. The aim of this study was to determin
Jan 1, 2006
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Production Of Reduced Nickel Powder In Tube FurnacesBy P. S. Seryogin
R & D works supported by industrial-scale tests, which were carried out by joint efforts of the OAO Gipronickel Institute and MMC ?Kola? engineers, have accomplished with the production of 90?95% meta
Jan 1, 2006
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Production of Saleable Copper and Zinc Concentrates Using Flotation of Mature Tailings of Non-Ferrous Ore Processing with Mechanical AttritionBy L. A. Nemchinova, M. A. Arustamian
"For a long time tailings piles of mining and smelting complexes have met the eye being a prospecting feedstock source for many industries. Nowadays, 6.5 million tons of copper and cooper-zinc process
Jan 1, 2018
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Production of Self-Fluxed Pellets and Improvement of QualityBy Hanaoka K, Ikeda K
Kakogawa Works, Kobe Steel, Ltd. has two pelletizing plants and one sintering plant, and the blast furnaces have been operated with 30 - 50% pellets. At Kakogawa Works, various improvements in pell
Jan 1, 1980
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Production Of Self-Fluxing Pellets And Their Effects On Blast Furnace Operations At Kobe Steel's Nadahama WorksBy F. Shigeyoshi
The development of pelletizing during the last ten years has continued, however, self-fluxing pellets have not been regularly and commercially produced for use in blast furnaces, except as Kobe Steel,
Jan 1, 1969
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Production of Single-phase Nd2Fe14B Alloy Powder by Reduction-Diffusion Process and Application to Production of Nd-Fe-B sintered magnetsBy Katsuya Kase, Kaname Takeya, Keaji Ohmori, Yoshiyuki Asakawa
"The reduction-diffusion process (the R-D process) using Ca as a reducing agent has been practiced in industry in the production of the SmCos type, the Nd-Fe-B type and the 1b-Fe-Co type magnetic mate
Jan 1, 1998