Bio-ecological remediation of freshwater aquaculture environments: A systematic review and bibliometric analysis

IF 5.1 Q1 ENVIRONMENTAL SCIENCES
Qiaohong Zhou , Kaixuan Wu , Lu Yao , Ruonan Chen , Shouzhuang Liu , Hao Xing , Linmei Nie , Zhenbin Wu
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Abstract

Freshwater aquaculture plays an important role in the global aquaculture industry. The success of freshwater aquaculture relies on the integration of bio-ecological remediation technologies to ensure its sustainable development. This paper systematically reviews the global literatures on bio-ecological remediation of freshwater aquaculture environments from 1990 to 2021, and discusses in detail the research progress and status quo in this field using both bibliometric analysis and content analysis. Our results indicate that the number of publications per year has increased year by year, with a particularly rapid increase after 2015. Institutions and researchers from China and the USA publish the greatest number of papers and contribute the most to this field. By analyzing the research progress in this field, we also find that the protection and restoration of freshwater aquaculture environments has received attention since as early as 1990, such as the application of constructed wetlands and recirculating aquaculture systems. Recently, researchers have increasingly focused on the use of microbial communities in remediation. Furthermore, vanRijn, J's papers are of great value to the research in this field. In content analysis, the application of primary technologies, including plant selection, aquatic animals, microorganisms, and biological filtration and purification equipment, as well as ecological engineering technologies with combinations of various types of organisms, is described to improve the effectiveness and efficiency of remediation. The performance, advantages, disadvantages, or limitations and prospects of these technology applications are analyzed in detail. By comparison, ecological engineering is shown to be the best remediation technology, being most comprehensive, and well-established. Taken together, this paper composes and summarizes existing work in this field, and provides guidance for future research on the improvement of existing technologies and the development of new technologies, with the aim of enhancing remediation capability, improving ecological sustainability and ensuring economic viability.

淡水养殖环境的生物生态修复:系统综述和文献计量分析
淡水养殖在全球水产养殖业中发挥着重要作用。淡水养殖业的成功有赖于生物生态修复技术的整合,以确保其可持续发展。本文系统回顾了 1990 年至 2021 年全球淡水养殖环境生物生态修复方面的文献,并通过文献计量分析和内容分析详细探讨了该领域的研究进展和现状。我们的研究结果表明,每年发表的论文数量逐年增加,2015 年后增长尤为迅速。来自中国和美国的机构和研究人员发表的论文数量最多,对该领域的贡献也最大。通过分析该领域的研究进展,我们还发现,早在1990年,淡水养殖环境的保护与修复就受到了关注,如建造湿地和循环水养殖系统的应用。最近,研究人员越来越关注利用微生物群落进行修复。此外,vanRijn, J 的论文对该领域的研究具有重要价值。在内容分析中,介绍了初级技术的应用,包括植物选择、水生动物、微生物和生物过滤净化设备,以及各类生物组合的生态工程技术,以提高修复的效果和效率。详细分析了这些技术应用的性能、优缺点或局限性以及前景。通过比较发现,生态工程是最全面、最成熟的最佳修复技术。综上所述,本文对该领域的现有工作进行了梳理和总结,为今后改进现有技术和开发新技术的研究提供了指导,旨在提高修复能力、改善生态可持续性和确保经济可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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