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首页> 外文期刊>Journal of Catalysis >Reforming and oxidative dehydrogenation of ethane with CO2 as a soft oxidant over bimetallic catalysts
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Reforming and oxidative dehydrogenation of ethane with CO2 as a soft oxidant over bimetallic catalysts

机译:双金属催化剂用CO2重整和氧化氧化脱氢作为二氧化硅催化剂的软氧化剂

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An efficient mitigation of abundantly available CO2 is critical for sustainable environmental impact as well as for novel industrial applications. Using ethane, CO2 can be catalytically converted into a useful feedstock (synthesis gas) and a value-added monomer (ethylene) via the dry reforming pathway through the C-C bond scission and the oxidative dehydrogenation pathway through the C-H bond scission, respectively. Results from the current flow-reactor study show that the precious meta} bimetallic CoPt/CeO2 catalyst undergoes the reforming reaction to produce syngas with enhanced activity and stability compared to the parent monometallic catalysts. In order to replace Pt, the activities of non-precious CoMo/CeO2 and NiMo/CeO2 are investigated and the results indicate that NiMo/CeO2 is nearly as active as CoPt/CeO2 for the reforming pathway. Furthermore, FeNi/CeO2 is identified as a promising catalyst for the oxidative dehydrogenation to produce ethylene. Density functional theory (DFT) calculations are performed to further understand the different pathways of the CoPt/CeO2 and FeNi/CeO2 catalysts. (C) 2016 Elsevier Inc. All rights reserved.
机译:高效缓解丰富的CO2对于可持续环境影响至关重要,以及新的工业应用。通过通过C-C粘合释放和通过C-H粘合释放的干燥重整途径和通过C-H粘合裂变,C-C粘合途径分别通过C-C粘合途径和氧化脱氢途径分别通过C-H粘合释放,可以将CO 2催化转化为有用的原料(合成气)和增值单体(乙烯)。目前流动反应器研究结果表明,与母体单金属催化剂相比,珍贵的Meta} Bimetallic Copt / CeO2催化剂经历重整反应以产生具有增强的活性和稳定性的合成气。为了替换Pt,研究了非珍贵的COMO / CEO2和NIMO / CEO2的活性,结果表明,NIMO / CEO2几乎与重整途径的COPT / CEO2一样活跃。此外,FENI / CEO2被鉴定为氧化脱氢以产生乙烯的有希望的催化剂。进行密度函数理论(DFT)计算以进一步了解COPT / CEO2和FENI / CEO2催化剂的不同途径。 (c)2016年Elsevier Inc.保留所有权利。

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