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首页> 外文期刊>Journal of Catalysis >Ammoxidation of ethane to acetonitrile over metal-zeolite catalysts
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Ammoxidation of ethane to acetonitrile over metal-zeolite catalysts

机译:在金属沸石催化剂上乙烷氨氧化为乙腈

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Ammoxidation of ethane to acetonitrile was studied over a variety of metal ion exchanged zeolite catalysts. We discovered that ethane can be efficiently converted to acetonitrile over some Co-zeolite catalysts. The type of zeolite is very important. In this regard, ZSM-5, beta, and NU-87 are superior to others. Among various transition metal cations, Co2+ is most active for acetonitrile formation. Kinetic studies on Co-ZSM-5 show that the nitrile formation rate is first order in NH3, 0.5 order in C2H6, and 0.8 order in O-2 In the absence of O-2, no reaction occurs. A reaction scheme is proposed, whereby C2H4, a reactive intermediate, is thought to add to a strongly adsorbed NH3 forming an adsorbed ethylamine, which is subsequently dehydrogenated to form C2H3N. (C) 1998 Academic Press. [References: 17]
机译:在各种金属离子交换沸石催化剂上研究了乙烷氨氧化为乙腈的过程。我们发现,在某些钴沸石催化剂上,乙烷可以有效地转化为乙腈。沸石的类型非常重要。在这方面,ZSM-5,beta和NU-87优于其他产品。在各种过渡金属阳离子中,Co2 +对于乙腈的形成最为活跃。对Co-ZSM-5的动力学研究表明,腈的生成速率在NH3中为一级,在C2H6中为0.5级,在O-2中为0.8级。在没有O-2的情况下,不发生反应。提出了一种反应方案,其中认为反应性中间体C 2 H 4加入强烈吸附的NH 3中,形成吸附的乙胺,然后将其脱氢形成C 2 H 3N。 (C)1998年学术出版社。 [参考:17]

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