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Reaction Pathways in Acrolein Oxidation over a Mixed-Oxide Catalyst

机译:混合氧化物催化剂丙烯醛氧化中的反应途径

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摘要

A reaction network detailing the mechanistic origins of 17 C-1-C-7 byproducts in acrolein oxidation over a vanadium molybdate mixed oxide catalyst doped with antimony and copper is proposed based on measurements of acrolein oxidation rates with co-feeds of C-1-C-7 organics formed as byproducts, acrylic acid C-13 isotopic tracer experiments, and probe molecule reactions. C-1 and C-2 products form via C-C bond scission of either the single or double C-C bond in acrolein and acrylic acid. C-4-C-7 products form by addition of one or two acrolein or acrylic acid molecules to a C-2 surface species coupled with decarbonylation or decarboxylation events. Two-carbon ethyl and vinyl surface species and three-carbon acrolein-derived surface species are involved in all pathways that lead to byproduct formation; controlling the relative abundance and reactivity of such intermediates is integral to prescribing process conditions and material compositions for selective oxidation of acrolein.
机译:提出了通过丙烯醛氧化氧化物催化剂的丙烯醛氧化在丙烯醛氧化中的17℃-1-C-7副产物的反应网络,基于丙烯醛氧化率与C-1的共源氧化率的测量 C-7组织成副产物,丙烯酸C-13同位素示踪剂实验和探针分子反应。 C-1和C-2产品通过丙烯醛和丙烯酸中的单一或双C-C键的C-C粘合裂变。 通过将一个或两个丙烯醛或丙烯酸分子添加到与脱羰或脱羧事件偶联的C-2表面物种中,通过加入一个或两个丙烯醛或丙烯酸分子。 两种碳乙基和乙烯基表面物质和三种碳丙烯醛衍生的表面物质涉及导致副产品形成的所有途径; 控制这种中间体的相对丰度和反应性与处方的工艺条件和材料组合物是一种用于选择性氧化丙烯醛的方法。

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