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Transformation of syngas to light hydrocarbons over bifunctional CuO-ZnO/SAPO-34 catalysts: the effect of preparation methods

机译:双功能CuO-ZnO / SAPO-34催化剂将合成气转化为轻烃:制备方法的影响

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摘要

Two series of bifunctional catalysts CuO-ZnO/SAPO-34 were prepared by isometric impregnation and milling calcination. The catalyst samples with different composition ratios have been investigated in the direct transformation of syngas to light hydrocarbons. Furthermore, all the samples were characterized by SEM, XRD, BET, H2-TPR and NH3-TPD techniques. The catalytic reactions were conducted with a feeding gas mixture of CO and H2 at 320 °C and 3.0 MPa. The results indicate that the preparation methods have significant effect on the catalysts performance. Though both series of catalysts could realize the direct transformation and the catalysts prepared by the milling calcination method facilitated a little more syngas to convert, the catalysts prepared by the impregnation method led to higher light hydrocarbons selectivity and less unexpected byproduct like CO2, since these serious catalysts displayed a smaller amount of metallic solid solution, a stronger interaction between the loaded metallic particles and supportive zeolites, more appropriate acidity strength as well.
机译:通过等量浸渍和球磨煅烧制备了两个系列的双功能催化剂CuO-ZnO / SAPO-34。在合成气直接转化为轻质烃的过程中,已经研究了具有不同组成比的催化剂样品。此外,所有样品均通过SEM,XRD,BET,H2-TPR和NH3-TPD技术进行了表征。在320℃和3.0MPa下用CO和H 2的进料气体混合物进行催化反应。结果表明,制备方法对催化剂性能有重要影响。尽管这两种催化剂都可以实现直接转化,并且通过研磨煅烧方法制备的催化剂促进了更多的合成气转化,但是通过浸渍方法制备的催化剂导致较高的轻烃选择性和较少的意外副产物(如CO2),因为这些严重催化剂显示出较少的金属固溶体,负载的金属颗粒与支持性沸石之间更强的相互作用以及更合适的酸度强度。

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