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Coking kinetics on the catalyst during alkylation of fcc off-gas with benzene to ethylbenzene

机译:催化裂化废气与苯烷基化为乙苯期间催化剂上的焦化动力学

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The production of ethylbenzene from the alkylation of dilute ethylene in fcc off-gases with benzene has been commercialized in China over a newly developed catalyst composed of ZSM-5/ZSM-11 co-crystallized zeolite.The duration of an operation cycle of the commercial catalyst could be as long as 180 days.The conversion of ethylene could attain higher than 95%,while the amount of coke deposited on the catalyst was only about 10 wt.%.Thermogravimetry (TG) was used to study the coking behavior of the catalyst during the alkylation of fcc off-gas with benzene to ethylbenzene.Based on effects of reaction time,reaction temperature,reactants and products on coking during the alkylation process,it is found that the coking rate during the alkylation procedure follows the order:ethylbenzne>ethylene>propylene>benzene for single component,and benzene-ethylene>benzene-propylene for bi-component under the same reaction condition.Furthermore,the coking kinetic equations for benzene-ethylene,benzene-propylene and ethylbenzene were established.
机译:在FCC尾气中将稀乙烯与苯进行烷基化反应生产乙苯已在中国通过新型研发的ZSM-5 / ZSM-11共结晶沸石催化剂商业化。催化剂可长达180天。乙烯的转化率可达到95%以上,而沉积在催化剂上的焦炭量仅为10 wt。%。在催化裂化废气与苯烷基化为乙苯的过程中作为催化剂。基于反应时间,反应温度,反应物和产物对烷基化过程中焦化的影响,发现烷基化过程中的焦化速率依次为:乙基苯在相同反应条件下>乙烯>丙烯>单组分苯和苯-乙烯>苯-丙烯双组分。此外,苯-乙烯,苯-PR的焦化动力学方程式建立了鸦片和乙苯。

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