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Recent Progress in Methanol-to-Olefins (MTO) Catalysts

机译:甲醇制烯烃(MTO)催化剂的最新进展

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摘要

Methanol conversion to olefins, as an important reaction in C1 chemistry, provides an alternative platform for producing basic chemicals from nonpetroleum resources such as natural gas and coal. Methanol-to-olefin (MTO) catalysis is one of the critical constraints for the process development, determining the reactor design, and the profitability of the process. After the construction and commissioning of the world's first MTO plant by Dalian Institute of Chemical Physics, based on high-efficiency catalyst and fluidization technology in 2010, more attention has been attracted for a deep understanding of the reaction mechanism and catalysis principle, which has led to the continuous development of catalysts and processes. Herein, the recent progress in MTO catalyst development is summarized, focusing on the advances in the optimization of SAPO-34 catalysts, together with the development efforts on catalysts with preferential ethylene or propylene selectivity.
机译:甲醇转化为烯烃,是C1化学中的重要反应,它为从非石油资源(例如天然气和煤炭)生产碱性化学品提供了另一种平台。甲醇制烯烃(MTO)催化是工艺开发,确定反应器设计以及工艺盈利能力的关键限制之一。自2010年大连化学物理研究所在世界上第一个MTO工厂建成投产以来,基于高效的催化剂和流化技术,对反应机理和催化原理的深入了解引起了更多关注。催化剂和工艺的不断发展。在此,总结了MTO催化剂开发的最新进展,重点是优化SAPO-34催化剂的进展,以及对具有优先乙烯或丙烯选择性的催化剂的开发工作。

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