首页> 外文会议>International Congress on Membranes and Membrane Processes (ICOM 2002) Vol.4 (Desalination Vol.147) Jul 7-12, 2002 Toulouse, France >Computational chemical study on separation of benzene and cyclohexane by a NaY zeolite membrane
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Computational chemical study on separation of benzene and cyclohexane by a NaY zeolite membrane

机译:NaY沸石膜分离苯和环己烷的计算化学研究

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Separation of benzene and cyclohexane by a NaY zeolite membrane was studied via grand canonical molecular dynamics (GCMD). The GCMD technique was recently developed by simulation methods and effective for the study of the membrane separation process at the molecular level since it can simulate the dynamics of the permeants at a constant pressure gradient. From the simulation results of benzene single-component permeation, benzene molecules were preferably located at the C site in a NaY membrane. Distribution of benzene molecules around sodium ions on the SII site in a binary mixture system was almost the same as that of the single component, whereas the distribution of cyclohexane molecules around SII sodium ions in a single-component and binary mixture system was different. Calculated permeation flux of cyclohexane showed a higher value than that of benzene in a single component. On the other hand, in the binary mixture system, the cyclohexane flux was reduced significantly compared to the single-component one. A derived separation factor was completely reversed for the single-component and binary systems. This tendency is the same as observed in experiments.
机译:通过大正则分子动力学(GCMD)研究了NaY沸石膜分离苯和环己烷的方法。 GCMD技术是最近通过模拟方法开发的,并且由于其可以模拟恒定压力梯度下渗透物的动力学,因此在分子水平上对膜分离过程的研究有效。从苯单组分渗透的模拟结果来看,苯分子优选位于NaY膜的C位。在二元混合系统中,SII位点上钠离子周围苯分子的分布与单组分几乎相同,而在单元和二元混合系统中,SII钠离子周围环己烷分子的分布不同。计算出的环己烷渗透通量值比单一组分中苯的渗透通量值高。另一方面,在二元混合物系统中,与单组分混合物相比,环己烷通量显着降低。对于单组分系统和二元系统,推导的分离因子完全相反。这种趋势与实验中观察到的相同。

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