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Cathode guides for conventional copper electrorefining reactors employing starter sheet cathodesGUERRA, E; SHEPHERD, J. L.Proceedings - Electrochemical Society. 2006, pp 345-354, issn 0161-6374, isbn 1-56677-440-3, 1Vol, 10 p.Conference Paper

Electrocatalytic Formation and Inactivation of Intermetallic Compounds in Electrorefining of SiliconOLSEN, Espen; ROLSETH, Sverre; THONSTAD, Jomar et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2010, Vol 41, Num 4, pp 752-757, issn 1073-5615, 6 p.Article

Identification of arsenato antimonates in copper anode slimesWANG, Xue-Wen; CHEN, Qi-Yuan; YIN, Zhou-Lan et al.Hydrometallurgy (Amsterdam). 2006, Vol 84, Num 3-4, pp 211-217, issn 0304-386X, 7 p.Article

Sacajawea and meKOLODNEY, Morris.The Electrochemical Society interface. 2000, Vol 9, Num 4, issn 1064-8208, 15, 54 [2 p.]Article

Preparation of 6N high-purity indium by method of physical-chemical purification and electrorefiningZHOU, Zhi-Hua; RUAN, Jian-Ming; MO, Hong-Bing et al.Journal of materials science. 2005, Vol 40, Num 24, pp 6529-6533, issn 0022-2461, 5 p.Article

Pasywacja anod w procesie elektrochemicznej rafinacji miedzi = Passivation des anodes au cours du raffinage électrochimique du cuivre = Anode passivation in the process of electrochemical copper refiningSEDZIMIR, J; GUMOWSKA, W.Rudy i Metale Nieżelazne. 1986, Vol 31, Num 10, pp 383-386, issn 0035-9696Article

First principles thermodynamic studies for recycling spent nuclear fuels using electrorefining with a molten salt electrolyteSEUNGHYO NOH; JOONHEE KANG; DOHYUN KWAK et al.Energy (Oxford). 2014, Vol 68, pp 751-755, issn 0360-5442, 5 p.Article

Analisis de las principales variables de proceso que influyen en el rechazo de los cátodos durante el electrorrefino del cobre(•) = Analysis of the process main variables influence in the rejection of the cathodes during copper electrorefiningCIFUENTES, G; VARGAS, C; SIMPSON, J et al.Revista de metalurgia (Madrid). 2009, Vol 45, Num 3, pp 228-236, issn 0034-8570, 9 p.Article

Electrorefining zinc dross in ammoniacal ammonium chloride systemZHENG HUAJUN; GU ZHENGHAI; ZHENG YUNPENG et al.Hydrometallurgy (Amsterdam). 2008, Vol 90, Num 1, pp 8-12, issn 0304-386X, 5 p.Article

Influence of geometric position of electrodes on metal transfer in reactors with molten electrolytesOMEL'CHUK, A. A; ZARUBITSKII, O. G; BUDNIK, V. G et al.Russian journal of applied chemistry. 1996, Vol 69, Num 3, pp 395-399, issn 1070-4272Article

Le thiourée et le disulfure de formamidine dans les bains d'électroraffinage du cuivre : spéciation et dosageDUSART, O; SAHEL, A; ROCHE, J. P et al.Analusis (Imprimé). 1990, Vol 18, Num 1, pp 45-50, issn 0365-4877Article

Charakterystika systemu kompleksowego sterowania procesem elektrorafinacji miedzi = Caractéristique du système de commande complexe du procédé d'électroaffinage du cuivre = Characteristic of the complexe system of copper electrorefining control processLEGIERSKI, T; JAKUSZEWSKI, R.Rudy i Metale Nieżelazne. 1987, Vol 32, Num 9, pp 328-332, issn 0035-9696Article

Metodyka badania i sposoby ilòsciowego wyrazania podatności miedzi na pasywacje w procesie elektrochemicznej rafinacji = Méthodes d'essais et du mode d'expression quantitative de la susceptibilité de passivation du cuivre dans le procédé d'affinage électrochimique = Methods of testing and ways of quantitative expression of copper susceptibility to passivation in the electrochemical refining processSEDZIMIR, J; GUMOWSKA, W.Rudy i Metale Nieżelazne. 1986, Vol 31, Num 11, pp 419-423, issn 0035-9696Article

APPLICATION OF GRAPHITE AS A CATHODE MATERIAL FOR ELECTROREFINING OF URANIUMLEE, J. H; KANG, Y. H; HWANG, S. C et al.Nuclear technology. 2008, Vol 162, Num 2, pp 135-143, issn 0029-5450, 9 p.Conference Paper

Anode-support system for the direct electrorefining of cement copper. Part III : Pretreatment and process conditions to refine industrial cementFIGUEROA, M; GANA, R; KATTAN, L et al.Journal of applied electrochemistry. 1997, Vol 27, Num 1, pp 99-103, issn 0021-891XArticle

Direct electrorefining of copper scrap using a titanium anode-support system in a monopolar cellFIGUEROA, M; GANA, R; KATTAN, L et al.Journal of applied electrochemistry. 1994, Vol 24, Num 3, pp 206-211, issn 0021-891XArticle

Komputerowy system operatywnego sterowania procesem elektrorafinacji miedzi = Système de computer de la commande opératoire du procédé d'électroaffinage de cuivre = Computer system of operational process control of copper electrorefiningALBRECHT, E; JAKUSZEWSKI, R; JAWOROWSKI, A et al.Rudy i Metale Nieżelazne. 1987, Vol 32, Num 11, pp 420-424, issn 0035-9696Article

Electrorefining of a gold-bearing antimony alloy in alkaline xylitol solutionZHANG DUCHAO; YANG TIANZU; LIU WEI et al.Hydrometallurgy (Amsterdam). 2009, Vol 99, Num 3-4, pp 151-156, issn 0304-386X, 6 p.Article

Study on the dissolution process of zinc anode in ammoniacal ammonium chloride systemZHENG HUAJUN; GU ZHENGHAI; ZHONG JINHUAN et al.Hydrometallurgy (Amsterdam). 2007, Vol 89, Num 3-4, pp 369-373, issn 0304-386X, 5 p.Article

Development of transuranium element recovery from high-level radioactive liquid wasteAKAI, Y; FUJITA, R.Journal of Nuclear Science and Technology. 1995, Vol 32, Num 10, pp 1064-1066, issn 0022-3131Article

Anode-support system for the direct electrorefining of cement copper. II: Process conditions using a circular cell with vertical rotary cathodeGANA, R; FIGUEROA, M; KATTAN, L et al.Journal of applied electrochemistry. 1995, Vol 25, Num 11, pp 1052-1056, issn 0021-891XArticle

Copper ions concentration at the surface of the PCR electro-refined anode = Stężenie jonów miedzi przy powierzchni anody rafinowanej z zastosowaniem okresowej zmiany kierunku prąduSEDZIMIR, J.Archives of metallurgy. 1992, Vol 37, Num 3, pp 307-326, issn 0860-7052Article

The solubility of silver in the liquid mixtures of oxides the system Na2O-SiO2 with addition Cu2O and Cr2O3ZIOŁEK, B; SZKLARSKI, W; BOGACZ, A et al.Archives of metallurgy. 1991, Vol 36, Num 4, pp 395-408, issn 0860-7052Article

Modyfikacja azidkowej metody oznaczania tiomocznika w kwasnym elektrolicie miedziowym = Modification de la méthode à l'azide pour le dosage de la thiourée dans les électrolytes acides de cuivre = Modification of the azide method of determination of thiourea in the acid copper electrolytePAJDOWSKI, L; KRZEWSKA, S.Chemia analityczna. 1986, Vol 31, Num 2, pp 285-289, issn 0009-2223Article

The role of arsenic in the homogeneous precipitation of As, Sb and Bi impurities in copper electrolyteWANG, Xue-Wen; CHEN, Qi-Yuan; YIN, Zhou-Lan et al.Hydrometallurgy (Amsterdam). 2011, Vol 108, Num 3-4, pp 199-204, issn 0304-386X, 6 p.Article

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