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首页> 外文期刊>Applied Surface Science >Effects of the state of Co species in Co/Al_2O_3 catalysts on the catalytic performance of propane dehydrogenation
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Effects of the state of Co species in Co/Al_2O_3 catalysts on the catalytic performance of propane dehydrogenation

机译:Co / Al_2O_3催化剂中Co物种状态对丙烷脱氢催化性能的影响

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In this paper, the Co/Al2O3 catalyst was prepared by incipient wetness impregnation method, and different post treatment methods were used to promote its dehydrogenation properties. Interestingly, we found that Co/Al2O3 catalysts with different post treatment protocols exhibited totally different catalytic behaviors in propane dehydrogenation. Fresh catalyst showed an induction period and was highly active for pyrolysis and coking at 10-30 min of reaction. The pre-reduction led to complete pyrolysis and coking at the beginning of reaction. However, the re-oxidation treatment gave a high selectivity (similar to 93.0%) to propylene at the whole process. XRD, H-2-TPR, XPS, TEM and hydrogen chemisorption investigations showed that the post treatment has a great impact on the state of cobalt species and the performance of propane dehydrogenation over Co/Al2O3 catalysts. Specifically, the poorly dispersed metal Co led to pyrolysis and coking, while highly dispersed metal Co were responsible for the dehydrogenation of propane. The large Co3O4 particles (D-Fresh = 33.68 nm) result in the large metal Co grains (DPre-reduced = 24.90 nm) after the reduction or reaction process. While during the re-oxidization process, the surface metal Co was re-oxidized in a mild environment and got re-dispersion (DRe-oxidized = 6.07 nm). And the surface cobalt oxides layer is more readily to be reduced to metal Co during the reaction thus leading to the shortened induction period. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文采用初湿浸渍法制备了Co / Al2O3催化剂,并采用不同的后处理方法提高了催化剂的脱氢性能。有趣的是,我们发现具有不同后处理方案的Co / Al2O3催化剂在丙烷脱氢中表现出完全不同的催化行为。新鲜催化剂显示出诱导期,并且在反应10-30分钟时对热解和焦化具有高活性。预还原导致反应开始时完全热解和焦化。但是,在整个过程中,再氧化处理对丙烯的选择性很高(约93.0%)。 XRD,H-2-TPR,XPS,TEM和氢化学吸附研究表明,后处理对钴的状态和Co / Al2O3催化剂上丙烷脱氢性能的影响很大。具体而言,分散较差的金属Co导致热解和焦化,而分散高的金属Co则导致丙烷脱氢。在还原或反应过程之后,大的Co3O4颗粒(D-新鲜= 33.68 nm)导致大的金属Co晶粒(DPre-reduced = 24.90 nm)。在重氧化过程中,表面金属Co在温和的环境中被重氧化并重新分散(DRe-氧化= 6.07 nm)。并且在反应期间表面钴氧化物层更容易被还原成金属Co,从而导致缩短的诱导期。 (C)2018 Elsevier B.V.保留所有权利。

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