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Toluene methylation with syngas to para‐xylene by bifunctional ZnZrO_(x)‐HZSM‐5 catalysts 被引量:2
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作者 Xiaoqin Han Jiachang Zuo +1 位作者 Danlu Wen Youzhu Yuan 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第4期1156-1164,共9页
Toluene methylation with methanol on H‐ZSM‐5(Z5)zeolite for the directional transformation of toluene to xylene has been industrialized.However,great challenges remain because of the high energy barrier of methanol ... Toluene methylation with methanol on H‐ZSM‐5(Z5)zeolite for the directional transformation of toluene to xylene has been industrialized.However,great challenges remain because of the high energy barrier of methanol deprotonation to the methoxy group,the side reaction of methanol to olefins,coke formation,and the deactivation of zeolites.Herein,we report the toluene methylation coupled with CO hydrogenation to showcase an enhancement in para‐xylene(PX)selectivity by employing a bifunctional catalyst composed of ZnZrO_(x)(ZZO)and modified Z5.The results showed that a PX selectivity of up to 81.8%in xylene and xylene selectivity of 64.8%in hydrocarbons at 10.3%toluene conversion can be realized over the bifunctional catalyst on a fixed‐bed reactor.The selectivity of gaseous hydrocarbons decreased to 10.9%,and approximately half of that was observed in methanol reagent route where the PX selectivity in xylene was 38.8%.We observed that the acid strength,the quantity ratio of Brönsted and Lewis acid sites,and the pore size of zeolites were essential for the PX selectivity.The investigation of the H_(2)/D_(2) kinetic isotope effect revealed that the newborn methyl group in xylene resulted from the hydrogenation of CO rather than toluene disproportionation.Furthermore,the catalyst showed no evident deactivation within the 100 h stability test.The findings offer a promising route for the production of value‐added PX with high selectivity via toluene methylation coupled with syngas conversion. 展开更多
关键词 Toluene methylation Syngas conversion Para‐xylene Bifunctional catalyst ZnZrO_(x)‐ZSM‐5
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CO_(2)加氢耦合芳胺和硝基芳烃N-烷基化催化剂研究进展 被引量:1
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作者 谢亚飞 左佳昌 +3 位作者 柳晓英 杨勇 赵凤玉 袁友珠 《科学通报》 EI CAS CSCD 北大核心 2021年第10期1144-1156,共13页
N-烷基芳胺用途广泛,是石油化工、橡胶产业、染料制备、药物研发和精细化学品合成等领域的重要中间体.传统的N-烷基芳胺合成往往存在原料价格较高、反应设备腐蚀和易于造成环境污染等问题.近年来,以储量丰富的温室气体CO_(2)作为C1资源,... N-烷基芳胺用途广泛,是石油化工、橡胶产业、染料制备、药物研发和精细化学品合成等领域的重要中间体.传统的N-烷基芳胺合成往往存在原料价格较高、反应设备腐蚀和易于造成环境污染等问题.近年来,以储量丰富的温室气体CO_(2)作为C1资源,将CO_(2)加氢与芳胺或硝基芳烃N-烷基化耦合制备N-烷基芳胺的催化剂研究取得显著进展.本文综述了CO_(2)加氢耦合芳胺和硝基芳胺N-烷基化催化剂研究进展,重点介绍CO_(2)加氢与苯胺、甲基苯胺和硝基苯N-烷基化耦合的均相和多相催化剂构效关联、影响因素以及催化反应机理,并对该领域的催化剂研发前景进行了展望. 展开更多
关键词 CO_(2)加氢 N-烷基化 耦合反应 芳胺 硝基苯胺 反应机理
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