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Roles of inherent mineral matters for lignite water slurry electrolysis in H2SO4 systemXUZHONG GONG; MINGYONG WANG; ZHI WANG et al.Energy conversion and management. 2013, Vol 75, pp 431-437, issn 0196-8904, 7 p.Article

Coupling photo and sono technologies to improve efficiencies in conductive diamond electrochemical oxidationSOUZA, Fernanda L; SAEZ, Cristina; CANIZARES, Pablo et al.Applied catalysis. B, Environmental. 2014, Vol 144, pp 121-128, issn 0926-3373, 8 p.Article

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

Complete electrochemical dechlorination of chlorobenzenes in the presence of naphthalene mediatorJALIL, Aishah A; FATIMAH, N; PANJANG, A et al.Journal of hazardous materials. 2007, Vol 148, Num 1-2, pp 1-5, issn 0304-3894, 5 p.Article

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

Studies on the effect of temperature of the electrolytes on the rate of production of hydrogenKOTHARI, Richa; BUDDHI, D; SAWHNEY, R. L et al.International journal of hydrogen energy. 2005, Vol 30, Num 3, pp 261-263, issn 0360-3199, 3 p.Article

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

Hydrogen production and ammonium recovery from urine by a Microbial Electrolysis CellKUNTKEU, P; SLEUTELS, T. H. J. A; SAAKES, M et al.International journal of hydrogen energy. 2014, Vol 39, Num 10, pp 4771-4778, issn 0360-3199, 8 p.Article

Temperaturabhängigkeit von Membrel-Wasserelektrolysezellen zwischen 80 und 150°C = Influence de la température sur les cellules d'électrolyse d'eau avec électrodes à membranes entre 80 et 150°C = Temperature dependence of membrane water electrolysis cells between 80 and 150°CSCHERER, G. G.Chemieingenieurtechnik. 1984, Vol 56, Num 2, pp 133-134, issn 0009-286XArticle

Effets isotopiques au cours de l'électrolyse de l'eau dans une cellule avec électrolyte polymère solideANDREEV, B. M; MARCHENKO, A. A; PAKHOMOV, V. P et al.Žurnal fizičeskoj himii. 1988, Vol 62, Num 6, pp 1661-1663, issn 0044-4537Article

Advances in the development of thin-film cells for high temperature electrolysisDIETRICH, G; SCHÄFER, W.International journal of hydrogen energy. 1984, Vol 9, Num 9, pp 747-752, issn 0360-3199Article

Noble fabrication of Ni―Mo cathode for alkaline water electrolysis and alkaline polymer electrolyte water electrolysisXUN TANG; LI XIAO; CUIXIA YANG et al.International journal of hydrogen energy. 2014, Vol 39, Num 7, pp 3055-3060, issn 0360-3199, 6 p.Article

Achieving high-efficiency hydrogen production using planar solid-oxide electrolysis stacksQINGSHAN LI; YIFENG ZHENG; WANBING GUAN et al.International journal of hydrogen energy. 2014, Vol 39, Num 21, pp 10833-10842, issn 0360-3199, 10 p.Article

REVIEW OF DEVELOPMENTS IN ELECTROMETALLURGY 1978-1979 = REVUE DU DEVELOPPEMENT DE L'ELECTROMETALLURGIE EN 1978-1979DUBY P.1980; J. MET.; ISSN 0022-2674; USA; DA. 1980; VOL. 32; NO 4; PP. 21-25; BIBL. 118 REF.Article

Electrochemical performance of solid oxide electrolysis cell electrodes under high-temperature coelectrolysis of steam and carbon dioxideKIM-LOHSOONTORN, Pattaraporn; BAE, Joongmyeon.Journal of power sources (Print). 2011, Vol 196, Num 17, pp 7161-7168, issn 0378-7753, 8 p.Conference Paper

Hydrogen as a fuel in the transport sector in AlgeriaBOUDRIES, R.International journal of hydrogen energy. 2014, Vol 39, Num 27, pp 15215-15223, issn 0360-3199, 9 p.Conference Paper

Determination of developing trend for a novelty microbial electrolysis cell by a modified inventive problem solving approachLI, Ya-Chieh; CHU, Chen-Yeon; CHIEN, Wei-Che et al.International journal of hydrogen energy. 2013, Vol 38, Num 35, pp 15830-15835, issn 0360-3199, 6 p.Conference Paper

Hydrogen production performance of 3-cell flat-tubular solid oxide electrolysis stackKIM, Sun-Dong; YU, Ji-Haeng; SEO, Doo-Won et al.International journal of hydrogen energy. 2012, Vol 37, Num 1, pp 78-83, issn 0360-3199, 6 p.Article

An experimental investigation to improve the hydrogen production by water photoelectrolysis when cyanin-chloride is used as sensibilizerROSSI, Federico; NICOLINI, Andrea.Applied energy. 2012, Vol 97, pp 763-770, issn 0306-2619, 8 p.Conference Paper

Nucleation and growth of electrolytic gas bubbles under microgravitySAKUMA, Go; FUKUNAKA, Yasuhiro; MATSUSHIMA, Hisayoshi et al.International journal of hydrogen energy. 2014, Vol 39, Num 15, pp 7638-7645, issn 0360-3199, 8 p.Article

Electrochemical evolution of hydrogen on composite La-Ni-Al/Ni-S alloy film in water electrolysisQING HAN; VAN JIN; NIANWEN PU et al.Renewable energy. 2010, Vol 35, Num 12, pp 2627-2631, issn 0960-1481, 5 p.Article

Hydrogen production in microbial electrolysis cells: Choice of catholyteYOSSAN, Siriporn; LI XIAO; PRASERTSAN, Poonsuk et al.International journal of hydrogen energy. 2013, Vol 38, Num 23, pp 9619-9624, issn 0360-3199, 6 p.Article

Efficient carbon dioxide electrolysis in a symmetric solid oxide electrolyzer based on nanocatalyst-loaded chromate electrodesCONG RUAN; KUI XIE; LIMING YANG et al.International journal of hydrogen energy. 2014, Vol 39, Num 20, pp 10338-10348, issn 0360-3199, 11 p.Article

The impact of using Particle Swarm Optimisation on the operational characteristics of a stand-alone hydrogen system with on-site water productionCLARKE, Daniel P; AL-ABDELI, Yasir M; KOTHAPALLI, Ganesh et al.International journal of hydrogen energy. 2014, Vol 39, Num 28, pp 15307-15319, issn 0360-3199, 13 p.Article

Steam electrolysis performance of intermediate-temperature solid oxide electrolysis cell and efficiency of hydrogen production system at 300 Nm3 h―1ZHENWEI WANG; MORI, Masashi; ARAKI, Takuto et al.International journal of hydrogen energy. 2010, Vol 35, Num 10, pp 4451-4458, issn 0360-3199, 8 p.Article

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