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受生物启发的超润湿性油水分离策略:迈向开放时代

Bioinspired superwetting oil-water separation strategy: toward the era of openness.

作者信息

Liu Zhuoxing, Si Yifan, Yu Cunlong, Jiang Lei, Dong Zhichao

机构信息

CAS Key Laboratory of Bio-Inspired Materials and Interfacial Sciences, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

School of Future Technology, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Chem Soc Rev. 2024 Oct 14;53(20):10012-10043. doi: 10.1039/d4cs00673a.

Abstract

Bioinspired superwetting oil-water separation strategies have received significant attention for their potential in addressing global water scarcity and aquatic pollution challenges. Over the past two decades, the field has rapidly developed, reaching a pivotal phase of innovation in the oil-water separation process. However, many groundbreaking studies have not received extensive scientific recognition. In this review, we systematically examine the application of bioinspired superwetting materials for complex multiscale oil-water separation. We discuss the development of 2D membrane filtration and 3D sponge adsorption materials in confined spaces, summarizing the core separation mechanisms, key research findings, and the evolutionary logic of these materials. Additionally, we highlight emerging open-space separation strategies, emphasizing several novel dynamic separation devices of significant importance. We evaluate and compare the design concepts, separation principles, materials used, comprehensive performance, and existing challenges of these diverse strategies. Finally, we summarize these advantages, critical bottlenecks, and prospects of this field and propose potential solutions for real oil-water separation processes from a general perspective.

摘要

受生物启发的超润湿性油水分离策略因其在应对全球水资源短缺和水污染挑战方面的潜力而备受关注。在过去二十年中,该领域迅速发展,进入了油水分离过程创新的关键阶段。然而,许多开创性研究尚未得到广泛的科学认可。在本综述中,我们系统地研究了受生物启发的超润湿性材料在复杂多尺度油水分离中的应用。我们讨论了二维膜过滤和三维海绵吸附材料在受限空间中的发展,总结了这些材料的核心分离机制、关键研究发现以及进化逻辑。此外,我们强调了新兴的开放空间分离策略,重点介绍了几个具有重要意义的新型动态分离装置。我们评估并比较了这些不同策略的设计理念、分离原理、所用材料、综合性能和现有挑战。最后,我们总结了该领域的这些优势、关键瓶颈和前景,并从总体角度为实际油水分离过程提出了潜在解决方案。

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