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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Catalytic oxidation of volatile organic compounds - Oxidation of methyl-isobutyl-ketone over Pt/zeolite catalysts
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Catalytic oxidation of volatile organic compounds - Oxidation of methyl-isobutyl-ketone over Pt/zeolite catalysts

机译:挥发性有机化合物的催化氧化-铂/沸石催化剂上甲基异丁基酮的氧化

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摘要

The catalytic oxidation of methyl-isobutyl-ketone (MIBK) in low concentration was investigated over several Pt/zeolite catalysts, namely Pt/HEAU(5 and 47) and PUHBEA(50), as well as Pt/gamma-Al2O3, which is the most widely used catalyst for VOC oxidation. The Si/Al ratio of the zeolite was found to be an important parameter for this reaction: catalysts with high Si/Al (i.e., more hydrophobic) present a better performance than those with low Si/Al. On the other hand, the zeolite structure (BEA or FAU) does not have a major influence on the catalyst performance. However, any one of the dealuminated zeolites is a better support than conventional alumina. Pt/HFAU(47) was selected as the most active catalyst.The Pt/HFAU(47) catalyst suffered some deactivation in long duration experiments, probably as a result of coke accumulation. It was found that there is an optimal oxygen partial pressure in the feed: at low oxygen content the accumulated coke compounds are less oxidised; at high oxygen contents platinum oxidation can occur. The presence of water vapour did not have a major effect on the catalyst performance; however, the presence of o-xylene inhibited the oxidation of MIBK, while the oxidation of o-xylene was not affected. (c) 2004 Elsevier B.V. All rights reserved.
机译:在几种Pt /沸石催化剂Pt / HEAU(5和47)和PUHBEA(50)以及Pt /γ-Al2O3上研究了低浓度的甲基异丁基酮(MIBK)的催化氧化最广泛用于VOC氧化的催化剂。发现沸石的Si / Al比是该反应的重要参数:具有高Si ​​/ Al(即,更疏水)的催化剂表现出比具有低Si / Al的催化剂更好的性能。另一方面,沸石结构(BEA或FAU)对催化剂性能没有主要影响。但是,任何一种脱铝沸石都比常规氧化铝更好。 Pt / HFAU(47)被选为活性最高的催化剂.Pt / HFAU(47)催化剂在长时间的实验中会发生失活,这可能是由于积炭所致。已发现进料中有一个最佳的氧分压:在低氧含量下,积聚的焦炭化合物的氧化较少;氧含量高时,铂可能发生氧化。水蒸气的存在对催化剂的性能没有重大影响。然而,邻二甲苯的存在抑制了MIBK的氧化,而邻二甲苯的氧化则不受影响。 (c)2004 Elsevier B.V.保留所有权利。

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