Search Documents
Search Again
Search Again
Refine Search
Refine Search
- Relevance
- Most Recent
- Alphabetically
Sort by
- Relevance
- Most Recent
- Alphabetically
-
Recovery of Selenium and Tellurium at Copper Cliff, Ontario (015fb7ab-59c3-4cd4-8ee7-ed7146d00998)By Frederic Benard
RECOVERY of selenium and tellurium at Copper Cliff by the Ontario Refining Co. has been previously described by the writer.1 During 1935 a new building was erected to house this operation and descript
Jan 1, 1938
-
Recovery of Selenium from Acid Plant Reverse Jet Scrubber Sludge in Copper SmeltingBy Chandrakala Kari, Divyang Shah, Lakshmi Kanth Reddy, Kaushik Vakil, Sanjay Sarkar, Bhavin Desai
Gases rich in sulfur dioxide generated as a by-product of smelting and converting operations of copper concentrate contain selenium apart from zinc, lead, copper, cadmium, bismuth, antimony, and arsen
Jan 1, 2019
-
Recovery Of Selenium From Electrolytic Copper Refinery Slimes - SummaryBy James E. Hoffmann
This paper reviews the chemistry of selenium and its compounds as it applies to the recovery of selenium from electrolytic copper refinery slimes. Based on this chemistry various processes for the ext
Jan 1, 1984
-
Recovery of Silica From Impure Sand DepositsBy W. R. Smith
Introduction No commercial deposits of silica sand are known to occur in British Columbia, so all requirements for foundry and other uses must be imported. During the war, nearly 5,000 tons per yea
Jan 1, 1947
-
Recovery Of Sillimanite From Beach Sands ? An Operator?s NightmareBy C. V. G. K. Murty
Sillimanite, chemically named Aluminum silicate, 3Al2O3SiO2 is one of the three forms of alumino silicate polymorphs and commonly encountered in aluminous metamorphic, plutonic, and volcanic rocks and
Sep 1, 2012
-
Recovery Of Silver And Gallium From Flue Dust With Acidified Thiourea SolutionsBy B. Pesic
The recovery of silver and gallium from flue dust with acidified thiourea solutions was examined. The studied parameters were temperature, particle size, thiourea concentration, acid concentration, an
Jan 1, 1986
-
Recovery of Silver from an Oxidised Lead-Silver Ore by Cyanide LeachingCyanidation tests by bottle agitation were conducted on an oxidized lead-silver ore containing approximately 12% Pb and 500 g/t Ag. Over 60% of the silver was leached when the ore was ground to 10
Jan 1, 1987
-
Recovery Of Silver From Chloride Leach Solutions By Iodide PrecipitationBy T. G. Carnahan
The U.S. Department of the Interior, Bureau of Mines, performed a laboratory-scale investigation of technique for recovering silver from pregnant solutions generated in the hydrometallurgical treatmen
Jan 1, 1980
-
Recovery Of Silver From Manganese OresBy Charles A. Rhoades
The Bureau of Mines is conducting research on a dual leaching method that offers the potential for the economic recovery of the silver as well as the manganese contained in some of the domestic mangan
Jan 1, 1984
-
Recovery Of Silver From Manganiferous Silver Ores By Segregation Roasting-FlotationBy C. Flores
It is well known that manganiferous silver ores containing manganese intimately associated with silver are not amenable to conventional extraction methods. The segregation process has been applied pri
Jan 1, 1994
-
Recovery of Silver From Residues of the Zinc Jarosite ProcessBy C. S. Ek
As a continuation of previous work, further tests have been carried out to recover silver from the residues obtained in a zinc jarosite process. Selective flotation has been performed with different r
Jan 1, 1990
-
Recovery of Silver from the Silver Nitrate System by Hydrogen ReductionBy W. Kunda
Silver nitrate solution is a very common product in hydrometallurgical processes involving the treatment of various silver bearing materials. Silver is recovered by electrolysis. The alternative metho
Jan 1, 1989
-
Recovery of Smelter Dust and Oxide at a Secondary Metals PlantBy William Romanoff
IN AN ARTICLE on "Recovering Smelter Dust and Oxide," published in the Engineering and Mining Journal (Vol. 131, No. 2), the authors briefly described some dust-recovery equipment and its operation at
Jan 1, 1933
-
Recovery Of SO2 From Low Strength Off-GasesBy B. Kruger
After the milling and flotation of the platinum bearing ore, the flotation concentrate is electrically smelted in 6-in-line electric arc furnaces and the resulting furnace matte treated in Peirce Smit
Jan 1, 2004
-
Recovery Of Sodium Hydroxide From Alkaline Waste SolutionsBy David T. Hobbs
Large quantities of highly alkaline, radioactive, liquid wastes are stored in underground tanks throughout the Department of Energy complex. These wastes will be pretreated to separate radionuclides a
Jan 1, 1999
-
Recovery of Sodium Sulphate from Alkaline Lake Deposits in SaskatchewanBy J. W. Spyker, D. H. Filson, W. H. W. Husband
"Large deposits of sodium sulphate exist in southern Saskatchewan in the brines or muddy crystal beds of alkali Jakes. Currently, more than 300,000 tons per year of sodium sulphate are produced from t
Jan 1, 1966
-
Recovery Of Some Metallic Compounds From The Fly Ashes Of Some Egyptian Power StationsBy S. S. Ibrahim
The left behind material after the combusion of fossel fuel in some power stations in Cairo; weighing tens of tons every years, was investigated. The material called "Fly Ashes" containing 7.5% Ni, 10
Jan 1, 1995
-
Recovery of Specialty Metals, Mainly Germanium and Indium from Zinc Primary SmeltingBy J. M. Demarthe
The recovery of minor metals from zinc concentrates is dependent on the process used for their treatment. The behaviour of gennanium and indium in pyrometallurgical processes such as the Imperial Smel
Jan 1, 1990
-
Recovery of Stray (Thin) Seams in Western Coal MiningBy Edward L. Fidler, Thomas E. Finch
Thin seam coal mining in the western US nominally equates to recovery of stray seams associated with thicker, major seams. The thin or stray seams encountered are generally recovered, but not in all c
Jan 1, 1981
-
Recovery of Sulfides from Sulfate-Containing Bleed Streams Using a Biological ProcessBy S. Vellinga, G. H. R. Janssen, C. J. N. Buisman, C. F. M. Copini
Non-ferrous metallurgical plants are often confronted with the need to neutralize bleed streams or effluents containing sulfates. The treatment of these streams could produce large amounts of gypsum.
Jan 1, 2000