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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Efficient evolution of hydrogen from liquid cycloalkanes over Pt-containing catalysts supported on active carbons under 'wet-dry multiphase conditions'
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Efficient evolution of hydrogen from liquid cycloalkanes over Pt-containing catalysts supported on active carbons under 'wet-dry multiphase conditions'

机译:在“干法多相条件”下,在活性炭上负载的含Pt的催化剂上,液态环烷烃可有效释放氢气

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Highly efficient evolution of hydrogen is achieved in the dehydrogenation of cycloalkanes such as cyclohexane, methylcyclohecane, and decalin over Pt catalyst supported on active carbon (AC) under "wet-dry multiphase conditions". Formation rate of hydrogen is largely dependent on reaction conditions such as reactant/catalyst ratio, temperature, and support. The highest initial rate of formation of hydrogen, kappa = 8.0 X 10~(-3) mol min~(-1) , was obtained in the dehydrogenation of cyclohexane over Pt/AC at 623 K and the reactant/catalyst ratio = 3.3 ml g~(-1). The addition of second metals such as Mo, W, Re Rh, Ir and Pd on the carbon -supported Pt catalysts enhances the dehydrogenation rate due to the promotion of C-H bond cleavage and/or desorption of aromatic products. A physical mixture of Pt/AC and Pd/AC catalysts exhibits higher activities than the monometalli Pt/AC catalyst owing to the synergistic effects of spillover, migration, and recombination of hydrogen over Pt and Pd catalysts.
机译:在“干法多相条件”下,在活性炭(AC)上负载的Pt催化剂上,通过环烷烃(如环己烷,甲基环己烷和十氢化萘)脱氢,可以高效地释放氢气。氢的形成速率在很大程度上取决于反应条件,例如反应物/催化剂的比例,温度和载体。在623 K和Pt / AC上环己烷脱氢反应中,氢的最高初始生成速率为κ= 8.0 X 10〜(-3)mol min〜(-1)。 g〜(-1)。在碳负载的Pt催化剂上添加第二金属,例如Mo,W,Re Rh,Ir和Pd,由于促进了C-H键的裂解和/或芳族产物的解吸而提高了脱氢速率。 Pt / AC和Pd / AC催化剂的物理混合物比单金属Pt / AC催化剂表现出更高的活性,这是由于氢在Pt和Pd催化剂上的溢出,迁移和重组带来的协同效应。

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