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首页> 外文期刊>Journal of Chemical Engineering of Japan >Separation of Nonaromatic C6 Compounds from Naphtha Cracking Raffinate by Adductive Crystallization
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Separation of Nonaromatic C6 Compounds from Naphtha Cracking Raffinate by Adductive Crystallization

机译:通过加成结晶从石脑油裂化残液中分离非芳族C6化合物

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References(14) Cited-By(4) The separation of the nonaromatic raffinate found in naphtha crackers was studied using adductive crystallization with thiourea. Experimental results of the separation of cyclohexane from nonaromatic raffinate and on the separation capacity of three binary mixtures—methyl cyclopentane (MCP)-cyclobexane, MCP-n-hexane and cyclohexane-n-hexane—are presented in this study. Structure, habit and shape of adduct crystals were investigated to examine the adduction mechanism by SEM and X-ray diffraction. Separation factors as high as 92 and extent of separation up to 0.78 were observed for one adduction stage, and the separation by one stage is approximately 5.6 to 19.2 times greater than the maximum separation that could be obtained by one theoretical distillation stage. The tendency for adduction in thiourea was found to be cyclohexane > MCP n-hexane. Cyclohexane of a purity of 99.9 wt.% was obtained by 4-stage adductions from nonaromatic raffinate.
机译:参考文献(14)引用(4)利用硫脲的加成结晶研究了在石脑油裂解装置中发现的非芳族提余液的分离。本研究介绍了从非芳香族萃余液中分离环己烷的实验结果,以及对三种二元混合物(甲基环戊烷(MCP)-环己烷,MCP-正己烷和环己烷-正己烷)的分离能力。研究了加合物晶体的结构,习性和形状,以通过SEM和X射线衍射检查加合物的机理。在一个加合阶段观察到高达92的分离因子和高达0.78的分离程度,并且一级分离的分离度比一个理论蒸馏阶段可达到的最大分离度大约5.6至19.2倍。发现硫脲中的加合趋势为环己烷> MCP 正己烷。通过四阶段加成反应从非芳族提余液中获得纯度为99.9 wt%的环己烷。

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