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Silica-based micro- and mesoporous catalysts for dry reforming of methane

机译:硅基微-介孔催化剂甲烷干重整

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摘要

The increasing environmental concern on global warming has triggered intensive research on sustainable utilization of greenhouse gases. CO2 (dry) reforming of methane (DRM) is one of the most effective means since it can transform two major greenhouse gases, CO2 and CH4, together into the more valuable synthesis gas. Silica-based micro- and mesoporous materials turned out to be one promising class of catalysts due to their wide availability, high thermal stability and high specific surface area. In this article, we have overviewed the background and key problems lying in DRM as well as the strength and weakness of silica-based materials used for DRM. Recent developments on these silica-based micro- and mesoporous catalysts including Ni-based catalysts, bimetallic catalysts, perovskite catalysts, Ni-based catalysts doped with promoters and core-shell catalysts for DRM have then been presented by summarizing the synthesis methods and reasons leading to the high catalytic performance and carbon resistance. Finally, key challenges and possible strategies to improve these silica-based catalysts for DRM have been discussed.
机译:全球越来越多的环境问题气候变暖引发了密集的研究可持续利用的温室气体。(干)改革的甲烷(DRM)是其中一个最有效的方法,因为它可以改变两个主要的温室气体,二氧化碳和甲烷,在一起到更有价值的合成气体。硅基微-介孔材料原来是一个很有前景的一类催化剂由于其广泛的可用性、高的热稳定性和高的比表面积。篇文章中,我们的背景和概况关键问题在DRM以及力量和硅基材料的弱点DRM。微-介孔催化剂包括镍基催化剂、双金属催化剂,钙钛矿催化剂,掺杂镍系催化剂启动子和核壳催化剂DRM然后被总结了吗合成方法和原因导致高催化性能和碳电阻。最后,关键的挑战和可能的策略改善这些硅基催化剂DRM讨论了。

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