...
首页> 外文期刊>Journal of Catalysis >SELECTIVE HYDROGENATION OF PHENYLACETYLENE ON PUMICE-SUPPORTED PALLADIUM CATALYSTS
【24h】

SELECTIVE HYDROGENATION OF PHENYLACETYLENE ON PUMICE-SUPPORTED PALLADIUM CATALYSTS

机译:浮石钯催化剂上苯乙烯的选择性氢化

获取原文
获取原文并翻译 | 示例

摘要

The liquid phase, selective hydrogenation of phenylacetylene on pumice-supported palladium catalysts has been studied for a large range of metallic dispersions (14% less than or equal to D-x less than or equal to 62%). The kinetics were analyzed by a five-parameter mathematical model. The mechanism was determined by the contribution of three basic routes involving only surface species in the rate-determining steps. The hydrogenation of phenylacetylene to styrene is ''structure insensitive.'' The disappearance rate constant of styrene produced from phenylacetylene is slightly lower than that of phenylacetylene and does not change in the case of the direct hydrogenation of styrene on the same Pd/pumice catalyst. However, Q(3) (the ratio of adsorption constants K-Eb/K-St, where Eb is ethylbenzene and St is styrene), which is typical of a zero order reaction (Q(3) --> 0) in the case of the direct hydrogenation, is practically constant ((Q(3) congruent to 2) in the case of hydrogenation of styrene produced from phenylacetylene. This is explained by the formation, in the latter case, of polymeric species or other species which are difficult to hydrogenate and by the consequent occupation of active sites so that the adsorption of styrene is inhibited. These species are also thought to be responsible for a flattening effect in the catalytic activity. Activity and selectivity data are critically analyzed and compared with those reported for other supported palladium catalysts. Since Pd/pumice catalysts also show high activity and selectivity at high metal dispersions, they could be of interest for industrial applications. (C) 1995 Academic Press, Inc. [References: 48]
机译:已经研究了富苯乙烯对浮石负载的钯催化剂的选择性氢化,用于大范围的金属分散体(14%小于或等于D-x小于或等于62%)。通过五参数数学模型分析动力学。该机制是通过三种基本路线的贡献确定,其中仅在速率确定步骤中涉及表面物种。苯乙烯与苯乙烯的氢化是“结构不敏感”。'苯乙烯制备的苯乙烯的消失率常数略低于苯乙烯的苯乙烯略低,并且在相同Pd /浮石催化剂上直接氢化苯乙烯的情况下不会改变。然而,Q(3)(吸附常数K-EB / K-ST的比例,EB是乙苯和ST是苯乙烯),其典型的零级反应(Q(3) - > 0)直接氢化的情况,实际上是恒定的((Q(3)一致为2),在由苯乙烯制备的苯乙烯的氢化的情况下。这是通过地层解释的,在后一种情况下,聚合物物种或其他物种难以氢化活性位点,使苯乙烯的吸附受到抑制。这些物种也被认为是对催化活性的扁平化作用负责。活性和选择性数据与报告的那些其他支持的钯催化剂。由于Pd /浮石催化剂也显示出高金属分散体的高活性和选择性,因此它们可能对工业应用感兴趣。(c)1995年学术出版社,Inc。[参考文献:48]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号