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Electrochemistry of sulfide mineral flotationBy S. Chander
The use of various electrochemical techniques to study mechanisms of sulfide mineral- flotation reagent interactions is briefly reviewed in this paper. Prior to such studies it is desirable to thermod
Jan 1, 1987
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Electrochemistry of Sulphide FlotationBy R WOODS
The interaction of, flotation collectors with sulphide mmerals takes place at the solid-solution interface. The electrochemistry of the processes which affect this interface are discussed. The interac
Jan 1, 1972
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Electrochemistry of T. Ferrooxidans Interactions With PyriteBy Batric Pesic
The interactions of mineral-pyrite with T. ferrooxidans were studied by using a cyclic voltametry technique. The interactions with bacteria were carefully examined during the entire growth stage of ba
Jan 1, 1990
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Electrochemistry of T. Ferrooxidans Interactions with PyriteBy Batric Pesic
The interactions of mineral-pyrite with T. ferrooxidans were studied by using a cyclic voltametry technique. The interactions with bacteria were examined during the entire growth stage of bacteria (fe
Jan 1, 1991
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Electrocoagulation based treatment of iron ore beneficiation plant process water for safe discharge and reuse, D. Das and B.K. NandiBy D. Das, B. K. Nandi
The present study focuses on utilising the electrocoagulation (EC) process for the treatment of process water generated in an iron ore beneficiation plant for safe discharge and reuse. Removal of heav
Jan 1, 2020
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Electrocoagulation Of Coal Preparation Plant Waters ? IntroductionBy George A. Snyder
The presence of moderate to high concentrations of colloidal clays in coal preparation plant waters can cause serious operating and economic problems for a coal company. Among the host of possible pro
Jan 1, 1979
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Electroconductive Pigments for Antistatic UseBy Kunio Nakahara, Kashiwagim Junichi, Takao Hayashi
"There are many problems for electronic devices and parts which were caused electrostatic damage by static electricity. It is necessary for prevention of electrostatic charge to decrease surface resis
Jan 1, 1998
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Electrocution Is The Leading Cause Of On-The-Job Death For Water Well DrillersCase 1: A driller raised a drill rig mast into a 7200-volt overhead power line. Both he and his helper were killed. Case 2: A driller-helper was pulling a winch cable toward a stack of drill ste
Jan 1, 2006
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Electrode Erosion In Submerged Arc FurnacesBy J. A. Bakken, G. Sævarsdóttir, H. Pálsson, M. Þ. Jónsson
The role of the electric arc in the consumption of electrodes in submerged arc furnaces has long been debated. The hostile environment in the furnace does not make direct measurement feasible, so simu
Jan 1, 2007
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Electrode Management ? Investigation Into Soft Breaks At 48MVA FeCr Closed FurnaceBy P. K. Sahoo, C. R. Ray, S. S. Rao
Good operation of Soderberg electrodes is dependent upon high quality electrode paste coupled with better electrode management procedures. Without having a good electrode operation, it is not possible
Jan 1, 2007
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Electrode Models For Søderberg ElectrodesBy B. Larsen
The Søderberg electrode was invented about 95 years ago by the company Elektrokjemisk, later known as ELKEM. It is still the most commonly used electrode system in submerged-arc furnaces for ferroallo
Jan 1, 2012
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Electrode Tip Melting Simulation during Vacuum Arc Remelting of Inconel 718*By L. A. Bertram, F. J. Zanner
"The goal of this paper is to present a tool to simulate transient melting of the electrode tip. This capability is needed to develop and test furnace control algorithms since experimental determinati
Jan 1, 1986
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Electrodeposition and Characterization of Fe-Mo-P Coatings as Electrocatalysts for Hydrogen Evolution during Chlorate ProductionBy E. Ghali, N. Sorour, G. Houlachi
"The binary Fe53Mo47 and ternary Fe54Mo30P16 coatings have been electrodeposited from citrate-based electrolyte on mild steel (MS) substrates. The electrodeposition has been conducted for 6 hours at 2
Jan 1, 2016
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Electrodeposition Behavior of Zn-A· Alloys from Methanol BathsBy Toshiaki Tsuru, Takeshi Ohgai, Hisaaki Fukushima, Shigeo Kobayashi, Tetsuya Akiyama
"Electrodeposition behavior of Zn-Cr alloys from the methanol baths was investigated. In the methanol baths of low Cr3+ concentration, Cr (III) compound was incorporated in the deposits and no lusfrou
Jan 1, 2000
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Electrodeposition of CdTe Semiconductor from Ammoniacal Aqueous SolutionsBy Kuniaki Murase, Tetsuji Hirato, Yasuhiro Awakura
"Electrodeposition of CdTe was studied using aqueous ammonia-alkaline electrolytic baths in which Cd11-and Te1V-ions are dissolving as Cd11(NH3)/+ and Te1vol-ions, respectively. Ca-thodic polarization
Jan 1, 1998
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Electrodeposition of Cobalt from Air and Water-Stable Ionic Liquid 1-Butyl-3-Methylimidazolium TetrafluoroborateBy Zhao wen Wang, Ramana G. Reddy, Min Li
"The electroreduction of Co(II) in l-butyl-3-methylimidazolium tetrafluoroborate (BMlMBF4) ionic liquid was investigated by cyclic volatrnmetry at 353 K. The results show that the reaction of Co(II) t
Jan 1, 2014
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Electrodeposition of Cobalt Metal: Effect of Sodium Octyl SulphateBy B. C. Tripathy, S. K. Padhy, R. K. Paramguru, Pinak Patnaik
"Cobalt is regarded as technology enabling metal among the less abundant metals found in the earth crust. Electrodeposition of the metal from aqueous sulphate solutions is the preferred technology for
Jan 1, 2016
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Electrodeposition of Malleable CobaltBy P. Louis
Although cobalt is known and used for its hardness and wear resistance, ductile cobalt can be obtained by electrolysis in chloride solutions, under the following conditions : pH : 1.5 - 2, Co++ : 30 -
Jan 1, 1988
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Electrodeposition of Nd:Fe Alloys from Aqueous Chloride SolutionsBy F. M. Doyle, G. Sidhu, A. J. Dussault, A. Raygani
There is a growing demand for rare earth metals for use in high strength permanent magnets, most notably Nd2Fe14B. Rare earth metals are extremely reactive, with reduction potentials around -2.5V SHE,
Jan 1, 2014
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Electrodeposition of Pb-Te-Tl Thermoelectric MaterialsBy Zhongning Shi, Ramana G. Reddy
"By cyclic voltammetry and potentiostat electrodeposition using Potentiostat/Galvanstat, electrochemical behavior on Ag electrode in electrolyte 0.2M NaOH+0.01MPb(NO3)2-0.01M TeO2 -0.01M TlNO3 solutio
Jan 1, 2011