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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Activity and stability investigation of [BMIM] [A1Cl_4] ionic liquid as catalyst for alkylation of benzene with 1-dodecene
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Activity and stability investigation of [BMIM] [A1Cl_4] ionic liquid as catalyst for alkylation of benzene with 1-dodecene

机译:[BMIM] [AlCl_4]离子液体作为苯与1-十二碳烯烷基化催化剂的活性和稳定性研究

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摘要

[l-butyl-3-methylimidazolium][tetrachloroaluminate]([BMIM][A1Cl_4])ionic liquid was used to catalyze the alkylation of benzene with 1-dodecene to synthesize LAB,linear alkylbenzenes.The batch reaction performances were investigated using the orthogonal experimental method.It showed that the most important factor that governed the conversion of olefin and selectivity of LAB was reaction temperature.Moreover,the effects of molar ratio of A1Cl_3 in ionic liquid to 1-dodecene and that of benzene to 1-dodecene on its conversion and selectivity are obviously in different degrees.The reaction temperature,molar ratio of benzene to 1 -dodecene and the amounts of catalyst compared with the traditional reaction technologies were decreased.Further,the experimental results demonstrated that the ionic liquid catalyst had higher activity at 25 deg C even if the molar ratio of AlCl_3 in ionic liquid to 1-dodecene and that of benzene to 1-dodecene were 0.07 and 8,respectively.Then,a continuous flow reactor equipped with a special bell type of settling-separating-discharging device was proposed.In this way the in situ separation of product mixtures from ionic liquid was realized and the stability of ionic liquid catalyst for the alkylation reaction was tested.A considerably longer running time of catalyst and higher efficiency were attained in the reactor adopted.
机译:用[1-丁基-3-甲基咪唑鎓] [四氯铝酸盐]([BMIM] [AlCl_4])离子液体催化苯与1-十二烯的烷基化反应,合成了LAB,线性烷基苯。采用正交试验研究了间歇反应性能。实验方法表明,影响烯烃转化率和LAB选择性的最重要因素是反应温度。此外,离子液体中AlCl_3与1-十二碳烯的摩尔比以及苯与1-十二碳烯的摩尔比对其影响与传统的反应技术相比,反应温度,苯与1-十二碳烯的摩尔比和催化剂的用量均有所降低。实验结果表明,离子液体催化剂具有较高的活性。即使离子液体中的AlCl_3与1-十二碳烯的摩尔比和苯与1-十二碳烯的摩尔比分别为0.07和8,也能保持在25℃。提出了一种具有特殊钟形沉降沉降分离装置的ctor,从而实现了离子液体中产物混合物的原位分离,并测试了用于烷基化反应的离子液体催化剂的稳定性。在所采用的反应器中达到催化剂的时间和更高的效率。

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