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Chloride Metallurgy - Process Technology DevelopmentBy Edgar Peek
"The two dominant metallurgical problems in treating most base metal sulphide concentrates in both the chloride and sulphate system are iron removal and sulphur elimination, respectively [1-3]. In thi
Jan 1, 2011
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Chloride-Free Processing of Aluminum Scrap to Recover By-Product MaterialsBy William D. Riley
The U. S. Bureau of Mines has developed technology to recover by-product materials from aluminum scrap using engineered scavenger compounds (ESC). ESCs are structural oxides with a channel or tunnel s
Jan 1, 1995
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Chloridizing Leaching at Park CityBy Theodore Holt
Outline of the Process THE Mines Operating Co.'s plant at Park City, Utah, was designed to treat the low-grade fillings in the old stopes of the Ontario mine. These fillings carry 6 to 14 oz. of
Jan 7, 1914
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Chloridizing Leaching At Park CityDiscussion of the paper of THEODORE P. HOLT, presented at the Salt Lake meeting August, 1914, and printed in Bulletin No. 91, July, 1914, pp. 1699 to 1708. F. S. SCHMIDT, Salt Lake City, Utah.-Any fu
Jan 11, 1914
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Chloridizing Mill of the Standard Reduction Co.By H. P. Allen
THE chloridizing mill of the Standard Reduction Co. is located about 75 miles south of Salt Lake City on the Tintic branch of the Denver & Rio Grande Western R. R. and 12 miles from the Tintic Standar
Jan 8, 1925
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Chloridizing Volatilization Experiments For Treatment Of Fly Ash Generated In Smelting Furnaces Of Municipal WastesBy Hideyuki Itou
Municipal wastes are mainly incinerated in Japan. Both bottom ash and fly ash from the incineration treatment are smelted recently to decrease the volume. Direct smelting of municipal wastes is also b
Jan 1, 2006
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Chlorinated Solvents For Coal BeneficiatingBy R. J. Nankee
Coal is our most abundant, low cost energy resource. Expansion of its use is being challenged due to "SO2 emission" regulation with even more restrictive legislation pending. High quality coal reserve
Jan 1, 1985
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Chlorinated Solvents For Coal BeneficiatingBy R. J. Nankee
Recent on-going efforts to develop commercial coal cleaning beneficiation processes using chlorinated solvents-as the separating media will be described. True heavy media separations were performed on
Jan 1, 1987
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Chlorination Kinetics of Xenotime with Chlorine in Presence of CarbonBy M. A. Gimenes
The utilization of chlorination in extractive metallurgy and advanced ceramics areas has been widely investigated as a preparative route in order to obtain intermetallic compounds, which are used as p
Jan 1, 2000
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Chlorination of Gold-Ores ; Laboratory-TestsBy A. L. Sweetser
EXPERIENCE has shown how difficult it is to obtain information regarding laboratory-tests in connection with the chlorination-process for the extraction of gold from its ores, and I therefore present
Sep 1, 1907
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Chlorination Of Gold-Ores; Laboratory-Tests.By Charles H. White
Discussion of the paper of A. L. Sweetser, Tress., xxxviii., 236. CHARLES H. WHITE, Harvard University, Cambridge, Mass. (communication to the Secretary*) :-Those interested in leaching-processes gla
Jan 7, 1908
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Chlorination of Titania FeedstocksBy Samantha Moodley, Rauf Hurman Eric, Cevat Kucukkaragoz, Aditya Kale
"Two titania slags, rutile and synthetic rutile were chlorinated with petroleum coke and CO in a small bubbling fluidized bed reactor. The study aims to identify differences in chlorination mechanism,
Jan 1, 2012
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Chlorination Operations at Jerritt Canyon, NevadaBy D. S. Barr
The Freeport McMoRan chlorination circuit is comprised of four related processes: ore chlorination, gas scrubbing, chlorine supply and excess hypochlorite removal ("hypo kill"). Each of these processe
Jan 1, 1987
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Chlorination Process for the Recovery of Copper from ChalcopyriteBy G. L. Hundley, R. E. Mussler, D. H. Yee, F. E. Block, R. S. Olsen
An anhydrous chlorination process for the recovery of copper from chalcopyrite was investigated. Pelletized concentrate was reacted continuously with gaseous chlorine in a vertical shaft reactor at 55
Jan 1, 1974
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Chlorination Roasting Of Rare Earth Element OxidesBy Larry G. Twidwell, Jannette L. Chorney, Bryce D. Ruffier, Katelyn M. Lyons, Daniel W. Gaede, Ryan J. Foy, Jerome P. Downey
The Army Research Laboratory (ARL) has an interest in the recovery and processing of rare earth elements. At Montana Tech, elevated temperature chlorination of rare earth oxides is presently being inv
Jan 1, 2015
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Chlorination-Grade Feedstock From Domestic IlmeniteBy John B. Wright
This paper describes laboratory techniques and subsequent results of Bureau of Mines research to produce chlorination-grade feedstock from an abundant, low-grade, domestic, rock ilmenite ore. The rese
Jan 1, 1984
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Chlorination-grade feedstock from domestic ilmeniteBy G. W. Elger, H. E. Bell, J. E. Tress, J. B. Wright
This paper describes laboratory techniques and subsequent results of US Bureau of Mines (USBM) research to produce chlorination-grade feed- stock from an abundant, low-grade, domestic, rock ilmenite o
Jan 1, 1986
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Chlorination: A Potential Approach for the Beneficiction of ChromiteBy N. Kanari
One of the criteria to define the market value of chromite concentrate is its chromium to iron ratio. Changing this ratio for a definite chromite mineral is impossible by physical processing. This stu
Jan 1, 1997
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Chlorine Anion Elimination from Zinc Sulfate Solution by Periodical Current Reverse Electrolytic SystemBy M. Suzuki, M. Dobashi, M. Kahata, T. Yoshida
Almost 30% of steel in Japan is produced by electric arc furnace (EAF) treatment of iron scrap. EAF dust includes approximately 20 wt % of Zn and 3- 5 wt % of CI and is treated by the pyrometallurgica
Jan 1, 1997
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Chlorine Based In-Situ Leaching of Alluvial Gold DepositsAlluvial mining even of shallow deposits is often economically a marginal proposition and causes significant disruption of the land surface through the need for large scale excavation. In-situ leach
Jan 1, 1992