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ZnO is a CO_2-selective steam reforming catalyst

机译:ZnO是一种CO_2选择性蒸汽重整催化剂

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ZnO was tested as possible methanol and - since formaldehyde is one of the key intermediates in methanol conversion reactions - also as formaldehyde steam reforming catalyst. Catalytic experiments in a batch as well as a flow reactor resulted in highly selective steam reforming, though at low specific activities, of formaldehyde and methanol over ZnO toward CO_2 (selectivity of 95-99.6%). Comparison of the behavior of ZnPd near-surface intermetallic phases, unsupported intermetallic ZnPd and supported ZnPd/ZnO catalysts reveals that formaldehyde is formed from methanol in parallel with CO_2 on the former, while on unsupported intermetallic ZnPd and ZnO-supported ZnPd, it is efficiently reacted toward CO_2, thus, a beneficial role of ZnO in oxidizing formaldehyde-derived intermediates toward CO_2 is evident.
机译:ZnO尽可能被测试为甲醇,并且-因为甲醛是甲醇转化反应中的关键中间体之一-还可以用作甲醛蒸汽重整催化剂。在批料以及流动反应器中的催化实验导致甲醛和甲醇的高选择性蒸汽重整,尽管其比活度较低,但相对于ZnO而言,其对CO_2的选择性更高(选择性为95-99.6%)。 ZnPd近表面金属间相,无载体金属间ZnPd和载体ZnPd / ZnO催化剂的性能比较表明,前者由甲醇与CO_2平行形成甲醛,而在无载体金属间ZnPd和ZnO负载的ZnPd上,甲醛有效发生了向CO_2反应的反应,因此ZnO在将甲醛衍生的中间体氧化为CO_2方面发挥了有益作用。

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