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Water hydrogen production from

Bipyridinium, lV-(benzylpolyvinyl)-AP-mcthyl-in photochemical hydrogen production from water, 6, 505... [Pg.91]

Pentapyrrolic macrocycles, 2,888 2,1,2-Pen tathiadiazol e-4,7-dicarbonitrile in hydrogen production from water, 6, 508 Pentatungstobis(organophosphonates), 3, 1053 4-Penten-l-al reaction with ethylene catalysts, rhodium complexes, 6, 300... [Pg.191]

Viologen, tetradecamethyl-in photochemical hydrogen production from water, 6. [Pg.246]

Tien HT, Chen JW (1990) Hydrogen production from water by semiconductor septum electrochemical photovoltaic cell using visible light. Int J Hydrogen Energy 15 563-568... [Pg.304]

Solar light photocatalytic hydrogen production from water over Pt and Au/Ti02 (anatase/rutile) photocatalysts influence of noble metal and porogen promotion. Journal of Catalysis, 269 (1), 179—190. [Pg.125]

Jing, D. and Guo, L. (2007) WS2 sensitized mesoporous Ti02 for efficient photocatalytic hydrogen production from water under visible light irradiation. Catalysis Communications,... [Pg.132]

S.M. Ji, P.H. Borse, H.G. Kim, D.W. Hwang, J.S. Jang, S.W. Bae, J.S. Lee, Photocatalytic hydrogen production from water-methanol mixtures using N-doped Sr2Nb207 under visible light irradiation Effects of catalyst structure, Phys. Chem. Chem. Phys. 7 (2005) 1315-1321. [Pg.385]

A mthenium-containing melanoidin (a condensation product of amino acids and carbohydrates) was found to photocatalyze hydrogen production from water under light irradiation with 1. < 320 nm, in the presence of EDTA as an electron donor and methyl viologen as an electron relay. The Ru-melanoidin photocatalyst is stable nnder prolonged irradiation times and, due to its insolubility in water, is suitable for... [Pg.124]

Table 5.8 Photocatalytic hydrogen production from water over Cr- and Fe-doped La,TijO, under visible light irradiation (X > 420 nm)... Table 5.8 Photocatalytic hydrogen production from water over Cr- and Fe-doped La,TijO, under visible light irradiation (X > 420 nm)...
The sulfur-iodine thermochemical water-splitting cycle (S-1 cycle) developed for hydrogen production from water is fundamentally based on the following three chemical reactions (Wang, 2007) ... [Pg.131]

Kida, T., Guan, G., Yoshida, A. 2003. LaMnO/CdS nanocomposite a new photocatalyst for hydrogen production from water under visible light irradiation. Chem Phys Lett 371 563-567. [Pg.156]

For hydrogen production from water, pure water (pH=7.0) is seldom used as an electrolyte. Water is a poor ionic conductor and hence it presents a high Ohmic overpotential. For the water splitting reaction to proceed at a realistically acceptable cell voltage the conductivity of the water is necessarily increased by the addition of acids or alkalis. Aqueous acidic and alkaline media offer high ionic (hydrogen and hydroxyl) concentrations and mobilities and therefore possess low electrical resistance. Basic electrolytes are generally preferred since corrosion problems are severe with acidic electrolytes. Based on the type of electrolytes used electrolyzers are... [Pg.40]

Nakamura T (1977) Hydrogen production from water utilizing solar heat at high temperatures. Sol Energy 19 467-475... [Pg.99]

Ghoroghchian J, Bockris JOM (1985) Use of a homopolar generator in hydrogen production from water. Int J Hydrogen Energy 10 101-112... [Pg.112]

Arora MK, Sahu N, Upadhyay SN, Sinha ASK (1999) Activity of cadmium sulfide photocatalysts for hydrogen production from water Role of support. Ind Eng Chem Res 38 2659-2665... [Pg.480]


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See also in sourсe #XX -- [ Pg.318 ]




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Hydrogen from water

Product water

Water hydrogenation

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