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China Plastics ›› 2024, Vol. 38 ›› Issue (8): 62-68.DOI: 10.19491/j.issn.1001-9278.2024.08.010
• Processing and Application • Previous Articles Next Articles
ZHANG Xuemin1(), ZHAI Lizhen1, LI Houbu2(
), QI Guoquan2, HUANG Shangbin1, ZHANG Dongna2, YANG Zhifeng3, ZHANG Xiaoyu3
Received:
2023-12-01
Online:
2024-08-26
Published:
2024-08-19
CLC Number:
ZHANG Xuemin, ZHAI Lizhen, LI Houbu, QI Guoquan, HUANG Shangbin, ZHANG Dongna, YANG Zhifeng, ZHANG Xiaoyu. Molecular simulation of hydrogen permeation behavior of polyamide 6 liner material for type IV hydrogen storage cylinder[J]. China Plastics, 2024, 38(8): 62-68.
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URL: https://www.plaschina.com.cn/EN/10.19491/j.issn.1001-9278.2024.08.010
压力/MPa | 吸附前总能量 | 吸附后总能量 | 能量差 |
---|---|---|---|
82.0 | -11 871.986 | -12 094.935 | -222.949 |
87.5 | -12 198.001 | -12 350.550 | -152.549 |
98.0 | -11 946.988 | -11 985.665 | -38.678 |
103.0 | -12 266.005 | -12 297.004 | -30.999 |
压力/MPa | 吸附前总能量 | 吸附后总能量 | 能量差 |
---|---|---|---|
82.0 | -11 871.986 | -12 094.935 | -222.949 |
87.5 | -12 198.001 | -12 350.550 | -152.549 |
98.0 | -11 946.988 | -11 985.665 | -38.678 |
103.0 | -12 266.005 | -12 297.004 | -30.999 |
1 | 孟翔宇, 陈铭韵, 顾阿伦, 等. “双碳”目标下中国氢能发展战略[J]. 天然气工业, 2022, 42(4): 156⁃179. |
MENG X Y, CHEN M Y, GU A L, et al. China's hydrogen development strategy in the context of double carbon targets[J]. Natural Gas Industry, 2022, 42(4): 156⁃179. | |
2 | 程一步. 2022年国内氢能产业发展动态及新政策对产业影响浅析[J]. 石油石化绿色低碳, 2022, 7(5): 1⁃6. |
CHENG Y B. China's hydrogen energy industry development and new policy implications in 2022[J]. Green Petroleum & Petrochemicals, 2022, 7(5): 1⁃6. | |
3 | 陈明和, 胡正云, 贾晓龙, 等. Ⅳ型车载储氢气瓶关键技术研究进展[J].压力容器, 2020, 37(11): 39⁃50. |
CHEN M H, HU Y Z, JIA X L, et al. Research progress on key technologies of type Ⅳ vehicle⁃mounted hydrogen storage vessel[J]. Pressure vessel technology, 2020, 37(11):39⁃50. | |
4 | 李厚补, 张学敏, 马相阳, 等. CH4在PVDF中的渗透特性及机理[J].塑料, 2021, 50(02): 72⁃76. |
LI H B, ZHANG X M, MA X Y, et al. Permeation characteristic and mechanism of CH4 in polyvinylidene fluoride[J]. Plastics, 2021, 50(02): 72⁃76. | |
5 | 张学敏, 王品, 李厚补, 等. CH4在PVDF中渗透行为及机理的分子模拟研究[J].中国塑料, 2021, 35(03): 97⁃104. |
ZHANG X M, WANG P, LI H B, et al. Molecular simulation of permeation behavior and mechanism of CH4 in PVDF[J]. China Plastics, 2021, 35(03): 97⁃104. | |
6 | 张冬娜, 丁楠, 张兆, 等. Ⅳ型瓶聚乙烯内胆材料氢渗透行为研究[J].新能源进展, 2022, 10(1): 15⁃19. |
ZHANG D N, DING N, ZHANG Z, et al. Hydrogen permeation behavior of polyethylene liner for type IV vessel[J]. Advances in New and Renewable Energy, 2022, 10(1): 15⁃19. | |
7 | Fujiwara Hirotada, Ono Hiroaki, Ohyama Keiko, et al. Hydrogen permeation under high pressure conditions and the destruction of exposed polyethylene⁃property of polymeric materials for high⁃pressure hydrogen devices (2)⁃ [J]. International Journal of Hydrogen Energy, 2021, 46(21): 11 832⁃11 848. |
8 | Kanesugi Hiroyuki, Ohyama Keiko, Fujiwara Hirotada, et al. High⁃pressure hydrogen permeability model for crystalline polymers[J]. International Journal of Hydrogen Energy, 2023, 48(2):723⁃739. |
9 | Yu Sun, Hong Lv, Wei Zhou, et al. Research on hydrogen permeability of polyamide 6 as the liner material for type Ⅳ hydrogen storage tank[J]. International Journal of Hydrogen Energy, 2020, 45(46): 24 980⁃24 990. |
10 | Humpenöder Jens. Gas permeation of fibre reinforced plastics[J]. Cryogenics, 1998, 38(1): 143⁃147. |
11 | Pepin Julie, Lainé Eric, Grandidier Jean⁃Claude, et al. Determination of key parameters responsible for polymeric liner collapse in hyperbaric type IV hydrogen storage vessels[J]. International Journal of Hydrogen Energy, 2018, 43(33): 16 386⁃16 399. |
12 | Marie⁃Hélène Klopffer, Philippe Berne, Mathilde Weber, et al. New materials for hydrogen distribution networks: materials development & technico⁃economic benchmark[J]. Defect and Diffusion Forum, 2012, 323/325: 407⁃412. |
13 | 李永青. Ⅳ型储氢瓶内胆材料HDPE/MMT阻隔性能研究[D]. 北京:北京化工大学, 2022. |
14 | Mozaffari Farkhondeh, Eslami Hossein, Moghadasi Jalil. Molecular dynamics simulation of diffusion and permeation of gases in polystyrene[J]. Polymer, 2010, 51: 300⁃307. |
15 | Yoshinori Kamiya, Naito Yasutoshi, Terada Katsuhiko, et al. Volumetric properties and interaction parameters of dissolved gases in poly(dimethylsiloxane) and polyethylene [J]. Macromolecules, 2000, 33(8): 3 111⁃3 119. |
16 | Pant Boyd. Molecular packing and diffusion in polyisobutylene[J]. Macromolecules, 1991, 24, 6 325⁃6 331. |
17 | 何曼君, 张红东, 陈维孝, 等.高分子物理第三版[M]. 上海: 复旦大学出版社, 2008. |
18 | Wypych George. Handbook of polymers (second edition) [M]. ChemTec Publishing, 2016. |
19 | Zheng Dukui, Li Jingfa, Liu Bing, et al. Molecular dynamics investigations into the hydrogen permeation mechanism of polyethylene pipeline material [J]. Journal of Molecular Liquids, 2022, 368: 1⁃16. |
20 | Klopffer M, Flaconnèche B. Transport properties of gases in polymers: bibliographic review [J]. Oil & Gas Science and Technology, 2006, 56(3): 223⁃244. |
21 | Sato Yoshiyuki, Yurugi Masashi, Fujiwara Koji, et al. Solubilities of carbon dioxide and nitrogen in polystyrene under high temperature and pressure[J]. Fluid Phase Equilibria, 1996, 125(1/2): 129⁃138. |
22 | Yoshiyuki Sato, Kijo Fujiwara, Tadao Takikawa, et al. Solubilities and diffusion coefficients of carbon dioxide and nitrogen in polypropylene, high⁃density polyethylene, and polystyrene under high pressures and temperatures[J]. Fluid Phase Equilibria, 1999, 162(1/2): 261⁃276. |
23 | 袁俊鹏, 刘秀英, 李晓东, 等. 沸石分子筛对CH4/H2的吸附与分离性能[J]. 物理学报, 2021, 70(15): 156801. |
YUAN J P, LIU X Y, LI X D, et al. Molecular simulation for adsorption and separation of CH4/H2 in zeolites[J]. Acta Physica Sinica, 2021, 70(15): 156801. | |
24 | Xiang JianHua, Zeng FanGui, Liang HuZhen, et al. Molecular simulation of the CH4/CO2/H2O adsorption onto the molecular structure of coal[J]. Science China Earth Sciences, 2014, 57: 1 749⁃1 759. |
25 | Yi Yong, Bi Peng, Zhao Xiaofeng, et al. Molecular dynamics simulation of diffusion of hydrogen and its isotopic molecule in polystyrene [J]. Journal of Polymer Research, 2018, 25(2): 1⁃6. |
26 | Kanesugi Hiroyuki, Ohyama Keiko, Fujiwara Hirotada, et al. High⁃pressure hydrogen permeability model for crystalline polymers [J]. International Journal of Hydrogen Energy, 2023, 48(2): 723⁃739. |
27 | Zhang Xuemin, Chu Huifang, Li Houbu, et al. Permeation vharacteristics of CH4 in PVDF with crude oil⁃containing [J]. Polymers, 2022, 14(13):1⁃12. |
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