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首页> 外文期刊>Kinetics and catalysis >Conversion of bio-oxygenates into hydrocarbons in the presence of a commercial Pt-Re/Al2O3 catalyst
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Conversion of bio-oxygenates into hydrocarbons in the presence of a commercial Pt-Re/Al2O3 catalyst

机译:在商业Pt-Re / Al2O3催化剂存在下将生物含氧化合物转化为烃中的烃

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摘要

It was found that the preliminarily reduced commercial platinum-rhenium catalyst PR-71 exhibited high activity in the conversion of ethanol into C-4-C-12 olefins and in the cross-condensation reactions of ethanol with glycerol, acetone, n-propanol, and isopropanol. Acetone and glycerol exhibited the highest reactivity in the cross-condensation reactions; this manifested itself in an increase in the total yield of the target fraction of C-4-C-12 hydrocarbons and in a more than 10-fold increase in the yield of products containing the odd numbers of carbon atoms, as compared with the conversion of individual ethanol. The structural studies performed by extended X-ray absorption fine structure (EXAFS) spectroscopy and transmission electron microscopy showed that the high selectivity of PR-71 can be caused by the formation of bimetallic Pt-Re and Pt-Al clusters in the course of the prolonged preliminary reduction of the catalyst.
机译:发现初步还原的商业铂 - 铼催化剂PR-71在乙醇转化为C-4-C-12烯烃中,并在乙醇与甘油,丙酮,正丙醇的交错反应中表现出高活性。 和异丙醇。 丙酮和甘油在交叉缩合反应中表现出最高的反应性; 与转化率相比,这表现为含有C-4-C-12烃的靶分数的总收率的总收率和含有奇数碳原子的产量的10倍。 单个乙醇。 通过延长X射线吸收细结构(EXAFS)光谱和透射电子显微镜进行的结构研究表明,PR-71的高选择性可能是由在过程中形成双金属PT-RE和PT-AL簇的形成引起的 延长催化剂的初步减少。

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