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Yuliya Strizhakova, A. Ryzhov, E. Smolenskii, A. Lapidus (2012)
Modeling of heats of combustion and shale oil yields in oil shale semicokingDoklady Chemistry, 442
(1988)
Mestorozhdeniya goryuchikh slant sev mira (Oil Shale Deposits of the World)
(2008)
genezis, sostavy, resursy (Oil Shales. Genesis, Compositions, Resources)
V.F. Cherepovskii (1988)
Mestorozhdeniya goryuchikh slantsev mira
Yu.A. Strizhakova (2008)
Goryuchie slantsy. genezis, sostavy, resursy
ISSN 00125008, Doklady Chemistry, 2012, Vol. 447, Part 1, pp. 233–237. © Pleiades Publishing, Ltd., 2012. Original Russian Text © A.N. Ryzhov, T.A. Avakyan, E.A. Smolenskii, A.L. Lapidus, 2012, published in Doklady Akademii Nauk, 2012, Vol. 447, No. 1, pp. 44–48. CHEMISTRY Dependence of the Hydrogen Content of OilShale Gas on the OilShale Gasification Conditions A. N. Ryzhov, T. A. Avakyan, E. A. Smolenskii, and Academician A. L. Lapidus Received April 12, 2012 DOI: 10.1134/S001250081211002X Oil shale is a promising solid fuel for producing hydrogen content is seen to increase with temperature energy and chemical products. The oilshale interac to a certain limiting value, or a hightemperature pla tion with steam, or oilshale gasification, gives a gas, a teau, of Y = 50–65 vol %. The hydrogen content at low resin, and a mineral residue [1–3]. Some physico temperatures is close to zero. Such curves are well chemical parameters of oil shale, such as heats of com approximated by such functions as arctangent or bustion and resin yields in lowtemperature carbon hyperbolic tangent: ization, were modeled [4–6]. YY = + k arctan() k() tt – , (1) 0 y t 0 An important challenge of solid fuel chemistry is
Doklady Chemistry – Springer Journals
Published: Dec 5, 2012
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