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Recovery Of Low-Level, Dissolved Uranium Values From Treated Mine WatersBy Timothy C. Smith, S. Andrew Jacobs, Douglas E. Gonzales, Sandy J. Schexnailder, Carl Urban
At the Schwartzwalder Mine (Cotter Corporation, Golden, Colorado) ion exchange resins have been used in mine water treatment experiments. The experiments, initiated in October 1979 and currently in pr
Jan 1, 1980
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Recovery of Magnesium from Waste Effluent in Nickel Laterite Hydrometallurgy ProcessBy Kuiting Wang, Jinshan Liu, Ninglei Sun, Aiguo Dong, Yeda Lu
"Eliminating the environmental threat caused by waste effluent containing magnesium sulfate derived from the process of nickel laterite sulfuric acid leaching and subsequent nickel precipitation is al
Jan 1, 2012
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Recovery Of Magnetite At New Zealand Steel Mining Operations Taharoa, New Zealand - SynopsisBy D. R. Buist
The Taharoa plant of New Zealand Steel Mining Limited extracts a 57% Fe titano-magnetite concentrate from a large mineral sand deposit 90 miles south of Auckland on the west coast of New Zealand'
Jan 1, 1973
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Recovery of Magnetite from Spiral Tailings at Labrador CityBy T. C. Murphy, W. Taciuk
In 1966, the Iron Ore Company of Canada commissioned a wet magnetic scavanging plant for the recovery of fine magnetite values p.resent in spiral tailings discharged from a spiral gravity separation p
Jan 1, 1972
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Recovery Of Magnetite In Fine Coal CleaningBy Randhir Sehgal
Heavy media processes have been used for cleaning +28 mesh coals for a number of years, Two applications, i.e., the vessels and the cyclones are widely used in the U. S. for this purpose. The basic re
Jan 1, 1981
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Recovery of Manganese From Low-Grade Manganese Ore by Sulphation RoastingLow-grade manganese ore from Sandur, India containing 28.2 per cent manganese and 20.9 per cent iron was roasted with sulphating agents, viz ammonium sulphate and sulphuric acid. The effects of temper
Jan 1, 1996
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Recovery of Manganese from Scrap Batteries of Mobile PhonesBy Sudha Goel, Manis Kumar Jha, Deblina Dutta, Rekha Panda
Based on the placement of lead and its consumption in industry bran- ches, the paper deals with the composition of lead in the massive of Kopaonik. Removal, tenuity and grinding of galenit. The paper
Mar 1, 2018
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Recovery Of Manganese From Solution Obtained By Bioleaching Three Kids OreBy S. N. McIntosh
Column bioleaching was evaluated by the U.S. Bureau of Mines as a means of recovering manganese from a low-grade ore from the Three Kids deposit in Southern Nevada. Manganese was solubilized from the
Jan 1, 1993
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Recovery of Manganese Value from Low Grade Manganese OresBy S. K. Bose, P. K. Sahoo, S. C. Sircar, P. K. Jena
High grade manganese ores are utilized in metallurgical, chemical, and battery industries, whereas the low grade ores are not accepted for these purposes and hence get accumulated at the minehead. In
Jan 1, 1981
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Recovery Of Mercury And Lead From Wastewater By Sulfide Precipitation- FlotationBy Ting Liu, Qian Li, Peng Deng
The wastewater containing Hg2+ and Pb2+ does great harm to the environment and human bodies. Traditional wastewater treatment cannot fundamentally put a stop to heavy metals pollution for producing se
Jan 1, 2015
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Recovery Of Mercury From Amalgamation Tailing, Buffalo Mines, CobaltBy E. B. Thornhill
(San Francisco Meeting, September, 1915) IN this paper on the recovery of mercury as sulphide, from the residues from the amalgamation and cyanide treatment of high-grade ores and concentrates, I wil
Jan 8, 1915
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Recovery Of Mercury From Amalgamation Tailing, Buffalo Mines, Cobalt (681f3240-5f15-46ef-82ee-c3313e82f45e)By E. B. Thornhill
Discussion of the paper of E. B. THORNHILL, presented at the San Francisco meeting, September, 1915, and printed in Bulletin No. 104, August, 1915, pp. 1653 to 1670. D. B. HUNTLEY, Oakland, Cal.-Abou
Jan 12, 1915
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Recovery Of Mercury From Spent Silver Oxide Button CellsBy S. Aktas
The present work describes an investigation of a hydrometallurgical process for the recovery of mercury from spent silver oxide button cells. The cell paste was leached in nitric acid to solubilize si
Jan 1, 2011
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Recovery Of Mercury From Spent Silver Oxide Button Cells (e9a6e483-a758-4188-a44f-0e705cf6d0aa)By S. Aktas
The present work describes an investigation of a hydrometallurgical process for the recovery of mercury from spent silver oxide button cells. The cell paste was leached in nitric acid to solubilize si
Nov 1, 2011
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Recovery of Mercury(II), Zinc (II), Cadmnm(II) and Copper(II) from Effluents of Incineration ProcessesBy H. Braun, T. Kind, K. Gloe, D. B. Dreisinger, H. Stephan, O. Heitzsch, G. A. Kordosky
Municipal garbage incineration processes with coupled wet flue gas cleaning systems generate effluents containing toxic heavy metals such as mercury, zinc, cadmium and copper. The separation of these
Jan 1, 1993
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Recovery Of Metal From SolutionsCHEMICAL PRECIPITATION U.S. 4,067,789 - Removal of soluble manganous ions from a zinc sulfate solution formed by leaching roasted zinc sulfide ore with spent electrolyte. An excess of ammonium pers
Jan 1, 1979
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Recovery of Metal Ions from Process Solutions by CementationBy Raj P. Singh
Applications of cementation in the recovery of metal ions from process solutions have been known for a long time. Cementation reactions involve electrochemical precipitation of a noble metal from solu
Jan 1, 2000
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Recovery of Metal SolutionsUS 4,152,143-Continuous precipitation of cement copper from an aqueous ore leach solution mixed with pieces of iron as the precipitant Copper depositing on the pieces of iron is loosened and removed t
Jan 1, 1980
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Recovery of Metal Values from Complex Sulphide Concentrates of Copper, Lead and Zinc through Aqueous ChlorinationBy Paramguru R. K, Jena P. K
Increasing demand for copper, lead and zinc with continuous depletion of good grade ore reserves, warrants the need for utilization of lean and complex ores of these metals. There is worldwide effort
Jan 1, 1981
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Recovery Of Metal Values From Copper Slags By Flotation And Roasting With PyriteBy G. Bulut
The recovery of copper and cobalt from ancient copper slags from the Küre region of Turkey was investigated. A fayalitic-type of ancient copper slag containing 1.24% Cu, 0.53% Co and 53.16% Fe were su
Jan 1, 2007