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首页> 外文期刊>Frontiers in Chemistry >Recent Progresses in Constructing the Highly Efficient Ni Based Catalysts With Advanced Low-Temperature Activity Toward CO2 Methanation
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Recent Progresses in Constructing the Highly Efficient Ni Based Catalysts With Advanced Low-Temperature Activity Toward CO2 Methanation

机译:近期构建高效Ni基于高温活性的催化剂对CO 2甲烷化的进展

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With the development and prosperity of the global economy, the emission of carbon dioxide (CO2) has become an increasing concern. Its greenhouse effect will cause serious environmental problems, such as the global warming and climate change. Therefore, the worldwide scientists have devoted great efforts to control CO2 emissions through various strategies, such as capture, resource utilization, sequestration, etc. Among these, the catalytic conversion of CO2 to methane is considered as one of the most efficient routes for resource utilization of CO2 owing to the mild reaction conditions and simple reaction device. Pioneer thermodynamic studies have revealed that low reaction temperature is beneficial to the high catalytic activity and CH4 selectivity. However, the low temperature will be adverse to the enhancement of the reaction rate due to kinetic barrier for the activation of CO2. Therefore, the invention of highly efficient catalysts with promising low temperature activities toward CO2 methanation reaction is the key solution. The Ni based catalysts have been widely investigated as the catalysts toward CO2 methanation due to their low cost and excellent catalytic performances. However, the Ni based catalysts usually perform poor low-temperature activities and stabilities. Therefore, the development of highly efficient Ni based catalysts with excellent low-temperature catalytic performances has become the research focus as well as challenge in this field. Therefore, we summarized the recent research progresses of constructing highly efficient Ni based catalysts toward CO2 methanation in this review. Specifically, the strategies on how to enhance the catalytic performances of the Ni based catalysts have been carefully reviewed, which include various influencing factors, such as catalytic supports, catalytic auxiliaries and dopants, the fabrication methods, reaction conditions, etc. Finally, the future development trend of the Ni based catalysts is also prospected, which will be helpful to the design and fabrication of the Ni catalysts with high efficiency toward CO2 methanation process.
机译:随着全球经济的发展和繁荣,二氧化碳排放(二氧化碳)已成为越来越多的关注。其温室效应将导致严重的环境问题,例如全球变暖和气候变化。因此,全球科学家们致力于通过各种策略控制二氧化碳排放,例如捕获,资源利用,螯合等。在这些中,CO 2对甲烷的催化转化被认为是最有效的资源利用途径之一由于温和的反应条件和简单的反应装置,二氧化碳。先驱热力学研究表明,低反应温度有利于高催化活性和CH 4选择性。然而,由于CO 2的活化导致的动力学屏障,低温将增强反应速率的增强。因此,具有对CO 2甲烷化反应的低温活性的高效催化剂的发明是关键溶液。由于其低成本和优异的催化性能,Ni基催化剂已被广泛研究为CO 2甲烷化的催化剂。然而,基于Ni的催化剂通常具有差的低温活性和稳定性。因此,具有优异的低温催化性能的高效Ni催化剂的发展已成为该领域的研究重点以及挑战。因此,我们总结了最近在本综述中构建高效Ni基于CO 2甲烷化的催化剂的研究进展。具体地,研究了如何提高基于Ni基催化剂的催化性能的策略,包括各种影响因素,例如催化载体,催化助剂和掺杂剂,制造方法,反应条件等。最后,未来Ni基催化剂的发展趋势也探讨,这将有助于Ni催化剂的设计和制造具有高效率的CO 2甲烷化过程。

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