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The Effect of Na2CO3 on the Catalytic Gasification of Rice Straw over Nickel Catalysts Supported on Kieselguhr
Catalyst Research Division 1, Korea Research Institute of Chemical Technology, P.O. Box 107, Taejon 305-600, Korea 1Department of Chemical Engineering, Sogang University, Seoul 121-742, Korea
kwlee@pado.krict.re.kr
Korean Journal of Chemical Engineering, March 2000, 17(2), 174-178(5), 10.1007/BF02707139
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Abstract
Rice straw was catalytically gasified over nickel catalysts supported on kieselguhr. Ni catalysts activated the gasification step from the formed oil. The effect of sodium carbonate on the formation of carbonized solid, oil and gas composition was also investigated. With the addition of sodium carbonate, the gas yield was largely increased and the formation of oil through liquefaction also increased. A reaction pathway on the gasification of rice straw was discussed.
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References
Appel HR, U.S. Bureau of mines, Pittsburgh (1971)
Hu CW, J. Catal., 166, 1 (1997)
Chen I, Ind. Eng. Chem. Res., 27, 429 (1988)
Dote Y, Dev. Thermochem. Biomass Convers., 1, 320 (1997)
Elliott DC, Res. Thermochem. Biomass Convers., 696 (1988)
Elliott DC, Ind. Eng. Chem. Res., 32, 1542 (1993)
Elloitt DC, Ind. Eng. Chem. Res., 33, 566 (1994)
Garcia L, Energy Fuels, 12, 139 (1998)
Jean-Claude C, Fuel, 57, 304 (1978)
Lee SW, Environ. Eng. Res., 4(4), 293 (1999)
Lihong X, Huadong Huagong Xueyuan Xuebao, 16, 528 (1990)
Minowa T, Zhen F, Ogi T, Varhegyi G, J. Chem. Eng. Jpn., 30(1), 186 (1997)
Minowa T, Fang Z, Ogi T, Varhegyi G, J. Chem. Eng. Jpn., 31(1), 131 (1998)
Ogi T, Chem. Lett., 1199 (1985)
Yokoyama SY, Chem. Lett., 646 (1986)
Hu CW, J. Catal., 166, 1 (1997)
Chen I, Ind. Eng. Chem. Res., 27, 429 (1988)
Dote Y, Dev. Thermochem. Biomass Convers., 1, 320 (1997)
Elliott DC, Res. Thermochem. Biomass Convers., 696 (1988)
Elliott DC, Ind. Eng. Chem. Res., 32, 1542 (1993)
Elloitt DC, Ind. Eng. Chem. Res., 33, 566 (1994)
Garcia L, Energy Fuels, 12, 139 (1998)
Jean-Claude C, Fuel, 57, 304 (1978)
Lee SW, Environ. Eng. Res., 4(4), 293 (1999)
Lihong X, Huadong Huagong Xueyuan Xuebao, 16, 528 (1990)
Minowa T, Zhen F, Ogi T, Varhegyi G, J. Chem. Eng. Jpn., 30(1), 186 (1997)
Minowa T, Fang Z, Ogi T, Varhegyi G, J. Chem. Eng. Jpn., 31(1), 131 (1998)
Ogi T, Chem. Lett., 1199 (1985)
Yokoyama SY, Chem. Lett., 646 (1986)