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基于水合物的甲烷存储于可生物降解水凝胶中吸收稀对苯乙烯磺酸钠溶液

Hydrate-Based Methane Storage in Biodegradable Hydrogels Absorbing Dilute Sodium P-Styrenesulfonate Solution.

作者信息

Hua Fangzheng, Tan Kang, Lv Jingyu, Wang Fei, Sun Mengting

机构信息

Shandong Engineering Laboratory for Preparation and Application of High-Performance Carbon-Materials, College of Electromechanical Engineering, Qingdao University of Science & Technology, Qingdao 266061, China.

出版信息

Gels. 2024 Dec 24;11(1):1. doi: 10.3390/gels11010001.

Abstract

Developing an exceptional reaction medium with high promotion efficiency, desirable biodegradability and good recyclability is necessary for hydrate-based methane storage. In this work, a kind of eco-friendly hydrogel, polyvinyl alcohol-co-acrylic acid (PVA-co-PAA), was utilized to absorb dilute sodium p-styrenesulfonate (SS) solution, for constructing a hybrid reaction medium for methane hydrate formation. Hydrogels or dilute SS solutions (1-4 mmol L) had weak or even no promoting effects on hydrate formation kinetics, while the combination of them could synergistically promote methane hydrate formation. In hydrogel-SS hybrid media containing 1, 2, 3 and 4 mmol L of SS solutions, the storage capacity reached 121.2 ± 1.6, 121.5 ± 3.1, 122.6 ± 1.9 and 120.6 ± 1.6 /, respectively. In this binary reaction system, the large surface area of hydrogels provided hydrate formation with sufficient nucleation sites and an enlarged gas-liquid interface, and in the meantime, the dilute SS solution produced an adequate capillary effect, which together enhanced mass transfer and accelerated hydrate formation kinetics. Additionally, the hybrid medium could relieve wall-climbing hydrate growth and improve poor hydrate compactness resulting from the bulk SS promoter. Moreover, the hybrid medium exhibited a preferable recyclability and could be reused at least 10 times. Therefore, the hydrogel-SS hybrid medium can serve as an effective and eco-friendly packing medium for methane hydrate storage tanks, which holds great application potential in hydrate-based methane storage technology.

摘要

开发一种具有高促进效率、良好生物降解性和可回收性的优异反应介质对于基于水合物的甲烷储存至关重要。在这项工作中,一种环保型水凝胶,聚乙烯醇 - 丙烯酸(PVA-co-PAA),被用于吸收稀对苯乙烯磺酸钠(SS)溶液,以构建用于甲烷水合物形成的混合反应介质。水凝胶或稀SS溶液(1 - 4 mmol/L)对水合物形成动力学的促进作用较弱甚至没有促进作用,而它们的组合可以协同促进甲烷水合物的形成。在含有1、2、3和4 mmol/L SS溶液的水凝胶 - SS混合介质中,储存容量分别达到121.2±1.6、121.5±3.1、122.6±1.9和120.6±1.6 /。在这个二元反应体系中,水凝胶的大表面积为水合物形成提供了足够的成核位点并扩大了气液界面,同时,稀SS溶液产生了足够的毛细管效应,共同增强了传质并加速了水合物形成动力学。此外,混合介质可以缓解水合物壁面生长问题,并改善由大量SS促进剂导致的水合物致密性差的问题。而且,混合介质表现出较好的可回收性,并且可以重复使用至少10次。因此,水凝胶 - SS混合介质可以作为一种有效且环保的甲烷水合物储存罐填充介质,在基于水合物的甲烷储存技术中具有巨大的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16d1/11765421/5e0228e80963/gels-11-00001-g001.jpg

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