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首页> 外文期刊>Catalysis science & technology >Preparation and characterization of a plasma treated NiMgSBA-15 catalyst for methane reforming with CO2 to produce syngas
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Preparation and characterization of a plasma treated NiMgSBA-15 catalyst for methane reforming with CO2 to produce syngas

机译:血浆处理的NIMGSBA-15催化剂的制备和表征用CO2产生二氧化碳的催化剂

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摘要

A plasma-assisted method was employed to prepare a NiMgSBA-15 catalyst. The catalytic properties of this catalyst were tested in methane reforming with carbon dioxide. The plasma-treated catalyst exhibited a higher initial catalytic activity and a better stability than those of the untreated counterpart catalyst. To elucidate the effect of the plasma treatment, the catalysts were characterized using XRD, N2 physisorption, XPS, TPR, CO2-TPD, TEM, TGA, Raman and temperature-programmed hydrogenation (TPH) techniques. The results obtained confirmed that the plasma treatment of the Ni precursor had a significant impact on the surface characteristics of the active sites. The plasma treatment reduced the sizes of the Ni clusters and enhanced Ni-support interaction, which enhanced the catalytic performance. The stronger basic sites derived from plasma treatment favored the chemisorption of CO2 and drove the coke elimination. The sintering of the metallic Ni particles did not take place during tests due to the confinement effect of the pore channels of mesoporous material. In addition, the plasma-treated catalyst showed excellent resistance to the deposition of filamentous carbon and encapsulating carbon. This was in contrast to the calcined sample, whose surface was covered by large amounts of graphitic carbon species, resulting in activity loss.
机译:采用了血浆辅助方法来制备NIMGSBA-15催化剂。该催化剂的催化特性在用二氧化碳改革中测试。与未经处理的对应催化剂相比,血浆处理的催化剂表现出更高的初始催化活性和更好的稳定性。为了阐明血浆处理的作用,使用XRD,N2物理吸附,XPS,TPR,CO2-TPD,TEM,TGA,RAMAN和温度程序氢化(TPH)技术来表征催化剂。获得的结果证实,Ni前体的血浆处理对活性位点的表面特征有显着影响。血浆处理可降低Ni簇的大小和增强的Ni支持相互作用,从而增强了催化性能。从血浆处理中得出的更强的基本位点有利于二氧化碳的化学吸收,并驱动了可乐消除。由于介孔材料的孔通道的限制作用,在测试期间没有进行金属Ni颗粒的烧结。此外,血浆处理的催化剂对丝状碳的沉积和封装碳的沉积具有极高的耐药性。这与钙化样品相反,刻录样品的表面被大量的石墨碳物种覆盖,从而导致活性损失。

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