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Results 1 to 25 of 1508

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Ecofriendly Cold Ramming Paste for an Aluminum Electrolysis Cell with Furan Resin As a BinderLIN TIAN; YANG MIN ZHOU; GANG XIE et al.Industrial & engineering chemistry research. 2012, Vol 51, Num 17, pp 6018-6024, issn 0888-5885, 7 p.Article

Influence of anode potentials on selection of Geobacter strains in microbial electrolysis cellsCOMMAULT, Audrey S; LEAR, Gavin; PACKER, Michael A et al.Bioresource technology. 2013, Vol 139, pp 226-234, issn 0960-8524, 9 p.Article

Evaluating the effects of scaling up on the performance of bioelectrochemical systems using a technical scale microbial electrolysis cellBROWN, Robert Keith; HARNISCH, Falk; WIRTH, Sebastian et al.Bioresource technology. 2014, Vol 163, pp 206-213, issn 0960-8524, 8 p.Article

Treatability studies on different refinery wastewater samples using high-throughput microbial electrolysis cells (MECs)LIJIAO REN; SIEGERT, Michael; IVANOV, Ivan et al.Bioresource technology. 2013, Vol 136, pp 322-328, issn 0960-8524, 7 p.Article

Investigation of electrolyte penetration in three carbon cathode materials for aluminum electrolysis cellsBRISSON, P. Y; FAFARD, M; SOUCY, G et al.Canadian metallurgical quarterly. 2006, Vol 45, Num 4, pp 417-426, issn 0008-4433, 10 p.Article

Optimization of electrolytic cells and processesALKIRE, R; STADTHERR, M.AIChE symposium series. 1983, Vol 79, Num 229, pp 135-141, issn 0065-8812Article

Design and performance of a calcia-stabilized zirconia electrolytic cell as a monitor for small amounts of H2O in H2 streamsSTANCHINA, W. E; WHELAN, J. M.Review of scientific instruments. 1985, Vol 56, Num 7, pp 1448-1451, issn 0034-6748Article

The electrolytic synthesis of hydrogen peroxide in a dual membrane cellKUEHN, C; LEDER, F; JASINSKI, R et al.Journal of the Electrochemical Society. 1983, Vol 130, Num 5, pp 1117-1119, issn 0013-4651Article

Zur Berechnung realer elektrochemischer Reaktoren mit Kreislaufführung des Elektrolyten = Calcul de réacteurs électrochimiques réels avec circulation d'électrolyte = Calculation of real electrochemical reactors with electrolyte circulationTHIELE, W; SCHLEIFF, M.Chemische Technik (Berlin, DDR, 1949). 1984, Vol 36, Num 7, pp 279-282, issn 0045-6519Article

Formation of Deposits on the Cathode Surface of Aluminum Electrolysis CellsALLARD, François; SOUCY, Gervais; RIVOALAND, Loig et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2014, Vol 45, Num 6, pp 2475-2485, issn 1073-5615, 11 p.Article

Electrochemical capillary cellsLOHRENGEL, M. M.Corrosion engineering, science and technology. 2004, Vol 39, Num 1, pp 53-58, issn 1478-422X, 6 p.Conference Paper

Three-electrode control procedures for electrolytic silver recoveryCOOLEY, A. C.SMPTE journal (1976). 1985, Vol 94, Num 5, pp 585-593, issn 0036-1682Article

A new electrolysis method. MagnetoelectrolysisIWAKURA, C; KITAYAMA, M; EDAMOTO, T et al.Chemistry Letters. 1984, Num 5, pp 809-812, issn 0366-7022Article

Comparison of complex effluent treatability in different bench scale microbial electrolysis cellsULLERY, Mark L; LOGAN, Bruce E.Bioresource technology. 2014, Vol 170, pp 530-537, issn 0960-8524, 8 p.Article

Secondary current distribution in a two-dimensional model cell composed of an electrode with an open partNISHIKI, Y; AOKI, K; TOKUDA, K et al.Journal of applied electrochemistry. 1986, Vol 16, Num 2, pp 291-303, issn 0021-891XArticle

Mass transfer at the electrodes of the falling-film cellCŒURET, F; LEGRAND, J.Journal of applied electrochemistry. 1985, Vol 15, Num 2, pp 181-190, issn 0021-891XArticle

Effect of cell geometry on conductance measurements in flow cellsTAYLOR, D; NIEMAN, T. A.Analytica chimica acta. 1984, Vol 159, pp 397-400, issn 0003-2670Article

Beitrag zur Aufklärung der Quecksilberbutterbildung bei der Chloralkalielektrolyse nach dem Amalgamverfahren = Mécanisme de formation du beurre de mercure pendant l'électrolyse de chlorures alcalins par la méthode à l'amalgame = Mechanism of the mercury-butter formation during the electrolysis of metal alkali chlorides by amalgam methodDORFLER, H.-D; MULLER, E; PIETSCHMANN, N et al.Chemische Technik (Berlin, DDR, 1949). 1987, Vol 39, Num 10, pp 447-449, issn 0045-6519Article

Influence of current distribution on electrode potentials in bipolar water electrolysis cells of the sandwich typeDIVISEK, J.Journal of applied electrochemistry. 1984, Vol 14, Num 5, pp 663-674, issn 0021-891XArticle

Influence de la symétrisation du système d'électrodes sur les processus dans une cellule électrochimique à microélectrodeSHORYGIN, A. P; TOLKACHEV, YU. V; ALIMOVA, R. Z et al.Èlektrohimiâ. 1983, Vol 19, Num 10, pp 1402-1404, issn 0424-8570Article

Primary current distribution in a two-dimensional model cell composed of an electrode with an open partNISHIKI, Y; AOKI, K; TOKUDA, K et al.Journal of applied electrochemistry. 1984, Vol 14, Num 5, pp 653-661, issn 0021-891XArticle

The testing of electrodes for alkaline solution water electrolysisBALAJKA, J.International journal of hydrogen energy. 1983, Vol 8, Num 10, pp 755-762, issn 0360-3199Article

Simulation of the Fluid Flow-Related Phenomena in the Electrolyte of an Aluminum Electrolysis CellYUFENG WANG; LIFENG ZHANG; XIANGJUN ZUO et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2011, Vol 42, Num 5, pp 1051-1064, issn 1073-5615, 14 p.Article

Analysis of the deoxidation process of copper using an electrochemical cellVAZQUEZ MONROY, Alberto; ROMERO SERRANO, Antonio; ARAUJO OSORIO, Jorge et al.Steel research international. 2006, Vol 77, Num 2, pp 97-102, issn 1611-3683, 6 p.Article

Studying and determination of the resistance of electrolyzer heavy-current contact systems in the chemical industrySHALAGINOV, A. A.Russian chemical industry. 1993, Vol 25, Num 10, pp 99-104, issn 1068-3704Article

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