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Filtration Properties of Ferric Hydroxide Precipitate in Nickel ProductionBy Beate Ina Jenssen
Ferric iron removal from the nickel electrolyte at Glencore Nikkelverk AS in Kristiansand, Norway, is achieved by precipitation of iron hydroxide followed by filtration, and it is desirable to improve
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The Role of Electrochemistry at East Penn ManufacturingBy R. A. Spitz, R. Leiby, M. Bricker
Electrochemistry plays a significant role in minimizing wastes at East Penn's secondary lead smelter. East Penn has been recovering spent battery acid for reuse in new batteries since 1992. East Penn
Jan 1, 2000
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Electrochemical Evaluation of Zinc Sulfate Electrolyte Containing Cobalt, Antimony and Organic AdditivesBy Thomas J. Keefe, O&apos
The effects of cobalt, B-naphthol, glue and antimony on the polarization behavior of zinc sulfate electrolyte were investigated. It was found that B-naphthol was beneficial in reducing the detrimental
Jan 1, 1985
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A Process Designed For The Ancient Copper Smelting Slags (Invited)By Bora Derin
This work deals with the recovery of valuable metals from the ancient copper smelting slags located in Küre-Turkey. In this process, copper and cobalt were recovered in metallic form and/or as their c
Jan 1, 2003
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A Process Designed For The Ancient Copper Smelting Slags (Invited)By Bora Derin
This work deals with the recovery of valuable metals from the ancient copper smelting slags located in Küre-Turkey. In this process, copper and cobalt were recovered in metallic form and/or as their c
Jan 1, 2003
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Effect of Test Temperature and Prior Straining on the Deformation Mode of Austenitic Stainless Steel during Tensile TestingBy S. Neogy, M. Gupta, D. Srivastava, V. Kain, S. Roychowdhury, R. C. Prasad, G. K. Dey
"Austenitic stainless steels are an important material of construction for Boiling Water Reactors (BWR). These stainless steels are amenable to strengthening by strain hardening. Various deformation m
Jan 1, 2011
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The Detoxification of Effluents Containing Arsenic With Iron Sulphate and Hydrogen PeroxideBy Teixeira
An experimental investigation on the kinetics of oxidation of As(III) with H202 in synthetic effluent solutions followed by precipitation of Fe/As (V) compounds was carried out. The variables investig
Jan 1, 1990
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Exploratory Investigations in Reactive Current Activated Tip-based Sintering (CATS)By K. Morsi, S. K. Kassegne, K. S. Moon, A. Numula
"Current Activated Tip-based Sintering (CATS) is a new process for the powder-based manufacturing of macro, micro and possibly nano-scale features and shapes. CATS enables the selective sintering of p
Jan 1, 2011
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Extraction and Recovery of Mercury from Concentrated Sulfuric Acid Streams Using Molecular Recognition TechnologyBy Steven R. Izatt
IBC Advanced Technologies, Inc. (IBC) has developed a mercury selective product, which can be used by sulfuric acid producers as either a polisher, or as the primary technology for mercury removal fro
Jan 1, 2003
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Halide As An Alternative Lixiviant For Gold Processing -An UpdateBy Tam Tran
Over the last decade, halide (chloride, bromide and iodide) systems have been evaluated as alternative lixiviants for the processing of gold to replace cyanidation which has been widely used in commer
Jan 1, 1998
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REE Recovery from the Fern D. Dichotoma by Acid Oxalic Precipitation After Direct Leaching with EDTABy Baptiste Laubie
Agromining is a phytotechnology aiming at producing commercial metal compounds from low-grade ores thanks to hyperaccumulating plants. The fern Dichranopteris dichotoma is a rare earth element (REE) h
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Development of Process Design for Coral Bay Nickel ProjectBy N. Tsuchida
Sumitomo Metal Mining Co. Ltd. (SMMC) is currently developing the flowsheet to treat stockpiled limonite, a type of laterite ore, at Rio Tuba on southern Palawan Island, Philippines. The new plant wil
Jan 1, 2004
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Improvements on the Process of Gold-Antimony Concentrate Smelting in ChinaBy Wei-feng Liu
On the basis of the brief introduction of the gold-antimony concentrate smelting process in China, some problems in the original process were analyzed and the corresponding improvements were introduce
Jan 1, 2008
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Arsenic Removal By Electrocoagulation Technology In The Comarca Lagunera MexicoBy José R. Parga
In some parts of the Comarca Lagunera with population of about 2.5 million people, situated in the central part of northern México, chronic arsenic poisoning is endemic and severe adverse effects attr
Jan 1, 2005
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Bioaccumulation of Metals from Solution: New Technology for Recovery, Recycling and ProcessingBy F. E. Brinckman, G. J. Olson, D. Johnsonbaugh, T. K. Trout
"Microbiological metal recovery is an emerging technology likely to play an increasing role in commercial ore leaching, metal removal from process and waste streams, and perhaps ultimately in processi
Jan 1, 1988
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Removal And Recovery Of Metal Ions From Process And Waste Streams Using Polymer FiltrationBy Gordon D. Jarvinen
Polymer Filtration (PF) Is an innovative, selecthle metal removal technology. Chelating, water-soluble polymers are used to selectively bind the desired metal ions and ultrafiltration is used to conce
Jan 1, 1999
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On The Metallurgy of Active Brazing of Silicon NitrideBy F. J. J. van Loo, J. K. Kivilahti, M. Paulasto
"Activation mechanism and interfacial reactions in brazing of ShN4 with different AgCuTi filler alloys has been investigated thermodynamically and experimentally. During brazing the AgCuTi filler allo
Jan 1, 1996
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Characterization of Iron-Arsenate and Lanthanum-Arsenate Precipitated CompoundsBy M. Misra, J. Nanor
The precipitation and removal of arsenic from process waters can be accomplished with addition of lanthanum chloride alone or in conjunction with ferric sulfate. The long term stability of these corre
Jan 1, 1999
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Zinc Extraction From Eaf Dust With Ezinex® ProcessBy Marco Olper
The Italian company Engitec Impianti has developed a new electrochemical technology for the treatment of Electric Arc Furnace (EAF) flue dust generated in steel mini-mills. This process is based on a
Jan 1, 1995
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Waste Minimization Activities In The Materials Fabrication Division At Lawrence Livermore National LaboratoryBy J. W. Dini
Introduction The mission of the Materials Fabrication Division (MFD) is to provide fabrication services and technology in support of all programs at Lawrence Livermore National Laboratory (LLNL). MFD
Jan 1, 1992