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含原油体系中CH在聚偏氟乙烯中的渗透特性

Permeation Characteristics of CH in PVDF with Crude Oil-Containing.

作者信息

Zhang Xuemin, Chu Huifang, Li Houbu, Qi Guoquan, Feng Jinmao, Gao Xiong, Yang Wenhui

机构信息

School of Materials Science and Engineering, Chang'an University, Xi'an 710064, China.

WeiXing Group, Zhejiang Weixing New Building Materials Co., Ltd., Linhai 317000, China.

出版信息

Polymers (Basel). 2022 Jul 3;14(13):2723. doi: 10.3390/polym14132723.

Abstract

The liner of reinforced thermoplastic composite pipes (RTPs) used for oil and gas gathering and transportation experienced blister failure due to gas permeation. Few reports have appeared on the problem of gas permeation in thermoplastics with absorbed crude oil. Accordingly, the permeability of CH in polyvinylidene fluoride (PVDF) containing crude oil was studied at the normal service conditions by molecular simulations. The results showed that the solubility coefficients of CH in PVDF containing crude oil were much lower than those in pure PVDF. It can be concluded that the crude oil molecules absorbed into PVDF occupied certain adsorption sites, resulting in a decrease in the adsorption capacity of CH molecules in PVDF. The diffusion coefficients of CH in oil-containing PVDF were significantly greater than in PVDF. This is because the absorption of oil molecules leads to the volume swelling of PVDF and then increases the free volume for diffusion. The permeation process showed that CH molecules were selective-aggregate adsorbed in the region with low potential energy in oil-containing PVDF firstly, and then they vibrated within the holes of PVDF containing oil in most cases and jumped into the neighboring holes at high temperatures and pressures.

摘要

用于油气集输的增强热塑性复合管(RTP)内衬由于气体渗透而出现起泡失效。关于含有吸收原油的热塑性塑料中的气体渗透问题,鲜有报道。因此,通过分子模拟研究了在正常使用条件下含原油的聚偏氟乙烯(PVDF)中CH的渗透率。结果表明,含原油的PVDF中CH的溶解度系数远低于纯PVDF中的溶解度系数。可以得出结论,吸收到PVDF中的原油分子占据了一定的吸附位点,导致PVDF中CH分子的吸附能力下降。含油PVDF中CH的扩散系数明显大于PVDF中的扩散系数。这是因为油分子的吸收导致PVDF体积膨胀,进而增加了扩散的自由体积。渗透过程表明,CH分子首先在含油PVDF中低势能区域选择性聚集吸附,然后在大多数情况下在含油PVDF的孔内振动,并在高温高压下跳入相邻的孔中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ee2/9268826/b52cf5b8578c/polymers-14-02723-g001.jpg

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