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水生植物与沉积物微生物燃料电池系统的研究进展与展望。

Advances and prospects on the aquatic plant coupled with sediment microbial fuel cell system.

机构信息

Beijing Key Laboratory for Source Control Technology of Water Pollution, Engineering Research Center for Water Pollution Source Control and Eco-remediation, Beijing Forestry University, Beijing, 100083, China.

Beijing Key Laboratory for Source Control Technology of Water Pollution, Engineering Research Center for Water Pollution Source Control and Eco-remediation, Beijing Forestry University, Beijing, 100083, China.

出版信息

Environ Pollut. 2022 Mar 15;297:118771. doi: 10.1016/j.envpol.2021.118771. Epub 2022 Jan 8.

Abstract

Energy resource scarcity and sediment pollution perniciousness have become enormous challenges, to which research has been focused on energy recovery and recycle technologies to solve both above problems. The organic matter stored in anoxic sediments of freshwater ecosystem represents a tremendous potential energy source. The system of aquatic plant coupled with sediment microbial fuel cell (AP-SMFC) has attracted much attention as a more feasible, economical and eco-friendly way to remediate sediment and surface water and generate electricity. However, the research on AP-SMFC has only been carried out in the last decade, and relevant studies have not been well summarized. In this review, the advances and prospects on AP-SMFC were systematically introduced. Firstly, the annual publication counts and keywords co-occurrence cluster of AP-SMFC were identified and visualized by resorting to the CiteSpace software, and the result showed that the research on AP-SMFC increased significantly in the last decade on the whole and will continue to increase. The bibliometric results provided valuable references and information on potential research directions for future studies. And then, the research progress and reaction mechanism of AP-SMFC were systematically described. Thirdly, the performance of AP-SMFC, including nutrients removal, organic contaminants removal, and electricity generation, was systematically summarized. AP-SMFC can enhance the removal of pollutants and electricity generation compared with SMFC without AP, and is considered to be an ideal technology for pollutants removal and resource recovery. Finally, the current challenges and future perspectives were summarized and prospected. Therefore, the review could serve as a guide for the new entrants to the field and further development of AP-SMFC application.

摘要

能源资源短缺和沉积物污染的危害性日益严重,研究集中于能源回收和循环技术,以解决上述两个问题。淡水生态系统缺氧沉积物中储存的有机物代表了巨大的潜在能源。水生植物与沉积物微生物燃料电池(AP-SMFC)系统作为一种更可行、经济和环保的方法,已引起了人们的广泛关注,可用于修复沉积物和地表水并发电。然而,AP-SMFC 的研究仅在过去十年中进行,相关研究尚未得到很好的总结。在本文中,系统地介绍了 AP-SMFC 的进展和前景。首先,借助 CiteSpace 软件,确定了 AP-SMFC 的年出版物计数和关键词共现聚类,并进行了可视化处理,结果表明,总体而言,过去十年中 AP-SMFC 的研究显著增加,并且将继续增加。该文献计量学结果为未来的研究提供了有价值的参考和潜在研究方向的信息。然后,系统地描述了 AP-SMFC 的研究进展和反应机制。接着,系统总结了 AP-SMFC 的性能,包括营养物质去除、有机污染物去除和发电。AP-SMFC 可以提高污染物去除和发电性能,与没有 AP 的 SMFC 相比,被认为是去除污染物和回收资源的理想技术。最后,总结了当前的挑战和未来展望。因此,本文可为该领域的新进入者和 AP-SMFC 应用的进一步发展提供指导。

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