首页> 外文会议>8th International Symposium on Catalyst Deactivation 1999 Brugge, Belgium, October 10-13, 1999 >Suppression of Carbon Deposition during the CO_2-Reforming of CH_4 by the Enhancement of CO_2 Adsorption
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Suppression of Carbon Deposition during the CO_2-Reforming of CH_4 by the Enhancement of CO_2 Adsorption

机译:通过增强CO_2的吸附抑制CH_4的CO_2重整过程中的碳沉积

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摘要

CO_2-reforming of CH_4 was studied from the veiwpoint of the suppression of carbon deposition. Ni/A_2lO_3 catalyst was modified by adding basic metal oxides or replaced with the disulfides of MO and W for such purpose. The oxides of Na, Km Mg, and Ca markedly decreased the activity of a supported Ni for CH_4 decomposition and also suppressed carbon deposition during OC_2-CH_4 reaction. These metal oxides altered the reaction kinetics in a way of the rraction order iwth respect to the CH_4 partial pressure from negative to positive and that with respect to the CO_2 partial pressure from positive to negative. Simialr rsults were also obtained on MoS_2 adn WS_2 catalysts. Their activity for CH_4 decomposition was much smaller than that of supported Ni and carbon deposition was markedly suppressed during CO_2-reforming on the disulfiee catalysts. Reaction kinetics was the same as that on the modified Ni/Al_2O_3 catalyst: positive order with respect to the CH_4 partial pressure and negative order with respect to the CO_2 partial pressure.
机译:从抑制碳沉积的角度研究了CH_4的CO_2重整。为此目的,通过添加碱性金属氧化物来改性Ni / Al_2O_3催化剂或将其替换为MO和W的二硫化物。 Na,Km Mg和Ca的氧化物显着降低了担载Ni的CH_4分解活性,并且还抑制了OC_2-CH_4反应期间的碳沉积。这些金属氧化物以相对于CH_4的分压从负到正,相对于CO_2的分压从正到负的升序改变反应动力学。在MoS_2和WS_2催化剂上也获得了类似的结果。它们的CH_4分解活性比负载的Ni小得多,并且在二硫催化剂上进行CO_2重整期间,碳沉积被明显抑制。反应动力学与在改性的Ni / Al_2O_3催化剂上的动力学相同:相对于CH_4分压为正序,相对于CO_2分压为负序。

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