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首页> 外文期刊>Chemical Engineering Science >Contributions of heterogeneous and homogeneous chemistry in the catalytic partial oxidation of octane isomers and mixtures on rhodium coated foams
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Contributions of heterogeneous and homogeneous chemistry in the catalytic partial oxidation of octane isomers and mixtures on rhodium coated foams

机译:铑涂层泡沫上辛烷异构体和混合物的催化部分氧化过程中非均相和均相化学的贡献

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摘要

Catalytic partial oxidation experiments with n-octane, 2,2,4-trimethylpentane (i-octane), and an n-octane: i-octane (1:1) mixture were performed on 80 and 45 ppi Rh-coated alpha-alumina foam supports at 2, 4, and 6 SLPM total flow rate in order to explore the effects of chemical structure for single components and binary mixtures on fuel reactivity and product distribution. When reacted as single components, the conversion of i-octane is greater than n-octane at C/O > 1.1 (both fuel conversions are 100% for C/O < 1.1). However, when reacted in an equimolar mixture, the conversion of n-octane is greater than i-octane. All three fuels give high selectivity to syngas (H-2 and CO) on 80 ppi supports for C/O < 1. For C/O > 1, n-octane produces high selectivity to ethylene while i-octane makes i-butylene and almost no ethylene. The fuel mixture produces these species proportional to the mole fractions of n-octane and i-octane within the reacting mixture. Increasing the support pore diameter decreases the selectivity to syngas and increases H2O and olefin selectivity.
机译:使用正辛烷,2,2,4-三甲基戊烷(i-辛烷)和正辛烷:异辛烷(1:1)混合物在80和45 ppi Rh包覆的α-氧化铝上进行催化部分氧化实验2、4和6 SLPM总流速下的泡沫支撑物,以探讨单一组分和二元混合物的化学结构对燃料反应性和产物分布的影响。当作为单一组分反应时,在C / O> 1.1时,异辛烷的转化率大于正辛烷(对于C / O <1.1,两种燃料的转化率均为100%)。然而,当在等摩尔混合物中反应时,正辛烷的转化率大于异辛烷。在80 ppi的C / O <1时,所有三种燃料都对合成气(H-2和CO)具有很高的选择性。对于C / O> 1,正辛烷对乙烯的选择性高,而异辛烷使异丁烯和几乎没有乙烯。燃料混合物产生与反应混合物中正辛烷和异辛烷的摩尔分数成比例的这些物质。增加载体孔径会降低对合成气的选择性,并会增加H2O和烯烃的选择性。

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