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海藻酸钠气凝胶作为有机凝胶剂载体用于有效溢油固化与回收

Sodium Alginate Aerogel as a Carrier of Organogelators for Effective Oil Spill Solidification and Recovery.

作者信息

Xue Ying, Shen Yun, Chen Xiuping, Dong Limei, Li Junfeng, Guan Yihao, Li Yiming

机构信息

Frontiers Science Center for Deep Ocean Multispheres and Earth System/Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, Ocean University of China, Qingdao 266100, P.R. China.

College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao 266100, P.R. China.

出版信息

Langmuir. 2024 Jan 16;40(2):1515-1523. doi: 10.1021/acs.langmuir.3c03301. Epub 2024 Jan 4.

Abstract

Marine oil spills pose a serious threat to the marine ecological environment. Phase-selective organogelators (PSOGs) are ideal candidates for oil spill gelation when used in combination with a mechanical recovery method. However, the toxicity of an organic solvent carrier has become a key problem when it is applied in the remediation of marine oil pollution. In this study, through an inexpensive and nontoxic ionic cross-linking and freeze-drying method, we successfully developed composite oil gelling agents that used a biomass sodium alginate aerogel as the carrier of 12-hydroxystearic acid (12-HSA). Simultaneously, carboxylated cellulose nanofibers (CNF-C) with large specific surface area and graphene oxide (GO) with excellent mechanical properties as reinforcing fillers were combined with an alginate matrix. 12-HSA, as a green and inexpensive organic gelator, was uniformly loaded on the aerogels by vacuum impregnation. The sodium alginate aerogel was capable of absorbing and storing oil due to its three-dimensional network skeleton and high porosity. Rheological studies have demonstrated that the organic gelator 12-HSA can be released from the aerogel substrate and self-assemble to form an oleogel with the absorbed oil quickly. The synergistic effect between absorption and congelation endows the composite oil gelling agent with efficient oil spill recovery capability. Based on eco-friendly, biodegradable, and simple synthesis methods, this composite oil gelling agent shows great potential for application in marine oil spill recovery.

摘要

海洋石油泄漏对海洋生态环境构成严重威胁。相选择性有机凝胶剂(PSOGs)与机械回收方法结合使用时,是溢油凝胶化的理想选择。然而,有机溶剂载体的毒性在其应用于海洋石油污染修复时已成为关键问题。在本研究中,通过一种廉价且无毒的离子交联和冷冻干燥方法,我们成功开发了复合油凝胶剂,该复合油凝胶剂使用生物质海藻酸钠气凝胶作为12-羟基硬脂酸(12-HSA)的载体。同时,将具有大比表面积的羧化纤维素纳米纤维(CNF-C)和具有优异机械性能的氧化石墨烯(GO)作为增强填料与藻酸盐基质相结合。12-HSA作为一种绿色且廉价的有机凝胶剂,通过真空浸渍均匀地负载在气凝胶上。海藻酸钠气凝胶由于其三维网络骨架和高孔隙率而能够吸收和储存油。流变学研究表明,有机凝胶剂12-HSA可以从气凝胶基质中释放出来,并与吸收的油快速自组装形成油凝胶。吸收和凝胶化之间的协同作用赋予了复合油凝胶剂高效的溢油回收能力。基于环保、可生物降解和简单的合成方法,这种复合油凝胶剂在海洋溢油回收中显示出巨大的应用潜力。

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