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作 者:王园园[1] 宋华[1] 苑丹丹[1] 孙兴龙 柳艳修[1] WANG Yuanyuan;SONG Hua;YUAN Dandan;SUN Xinglong;LIU Yanxiu(College of Chemistry&Chemical Engineering,Northeast Petroleum University,Daqing 163318,Heilongjing,China;Daqing Petrochemical Engineering Company Limited,Daqing 163714,Heilongjiang,China)
机构地区:[1]东北石油大学化学化工学院,黑龙江大庆163318 [2]大庆石化工程有限公司,黑龙江大庆163714
出 处:《化工进展》2022年第1期237-243,共7页Chemical Industry and Engineering Progress
基 金:黑龙江省杰出青年基金(JC2018002);黑龙江省青年基金(QC2017005);东北石油大学青年基金(2018QNL-26);东北石油大学人才引进科研启动费资助(1305021821)。
摘 要:采用不同浓度的柠檬酸(HCA)对H-beta分子筛样品进行改性,通过XRD、SEM、TEM、FTIR、N_(2)物理吸脱附、NH_(3)-TPD及吡啶Py-IR等手段对改性分子筛进行了表征。实验结果表明,适宜浓度的柠檬酸改性不但没有破坏H-beta分子筛的骨架结构,而且在脱铝的同时兼具补铝功能。改性后的H-beta分子筛孔道更加畅通,虽然总酸量有所下降,但对烷基化有利的中强酸量和B酸含量却明显增加,催化活性增强。但柠檬酸浓度过高会脱除骨架铝,破坏晶格结构,导致催化活性降低。催化剂的甲苯叔丁基化活性评价表明,适宜的柠檬酸处理浓度为0.25mol/L。在0.25HCA/H-beta催化剂作用下,甲苯转化率为67.0%,对叔丁基甲苯的选择性高达80.4%。A series of citric acid(HCA)modified H-beta zeolites were prepared and characterized by XRD,SEM,TEM,FTIR,N_(2) physical adsorption and desorption,NH_(3)-TPD,and Py-IR.The experimental results showed citric acid treatment did not damage the skeleton structure of H-beta,but had the function of both dealuminization and realuminization.The channel was more open due to removal of nonframework aluminum.Though the total acid decreased,the content of medium strong acid and Bronsted acid were increased,therefore the catalytic activity was enhanced.However,high concentration of citric acid removed the skeleton aluminum,damaging the lattice structure and reducing the catalytic activity.The performance assessment of catalysts in butylation of toluene showed that the suitable citric acid concentration for the modification was 0.25mol/L.The highest conversion of toluene could reach 67.0%and the selectivity of PTBT was 80.4% under 0.25HCA/H-beta.
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