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Lower olefins from methane: recent advances

机译:来自甲烷的下烯烃:最近的进展

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Modern methods for methane conversion to lower olefins having from 2 to 4 carbon atoms per molecule are generalized. Multistage processing of methane into ethylene and propylene via syngas or methyl chloride and methods for direct conversion of CH4 to ethylene are described. Direct conversion of syngas to olefins as well as indirect routes of the process via methanol or dimethyl ether are considered. Particular attention is paid to innovative methods of olefin synthesis. Recent achievements in the design of catalysts and development of new techniques for efficient implementation of oxidative coupling of methane and methanol conversion to olefins are analyzed and systematized. Advances in commercializing these processes are pointed out. Novel catalysts for Fischer +/- Tropsch synthesis of lower olefins from syngas and for innovative technique using oxide +/- zeolite hybrid catalytic systems are described. The promise of a new route to lower olefins by methane conversion via dimethyl ether is shown. Prospects for the synthesis of lower olefins via methyl chloride and using non-oxidative coupling of methane are discussed. The most efficient processes used for processing of methane to lower olefins are compared on the basis of degree of conversion of carbonaceous feed, possibility to integrate with available full-scale production, number of reaction stages and thermal load distribution.
机译:甲烷转化为每分子具有2至4个碳原子的低级烯烃的现代方法是全面化的。描述了通过合成气或甲基氯化物的甲烷和丙烯的多级处理和用于将CH 4直接转化为乙烯的方法。考虑通过甲醇或二甲醚将合成气与烯烃的直接转化为烯烃以及过程的间接途径。特别注意烯烃合成的创新方法。分析近期在催化剂的设计方面的成就和高效实施甲烷和甲醇转化为烯烃的氧化偶联与烯烃的新技术的发展。指出了商业化这些过程的进步。描述了使用氧化物+/-沸石杂化催化系统的合成气+/-滴灌的下烯烃的新型催化剂。通过甲烷转化通过二甲醚向下烯烃的新途径的承诺示出了。讨论了通过甲基氯化物合成下烯烃的前景和使用甲烷的非氧化偶联。比较含碳饲料转化程度,与可用的全规模生产,反应阶段数量和热负荷分布相结合的基础上使用用于将甲烷加工到下烯烃的最有效的方法。

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