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固定化菌体制备颗粒去除有机氯化合物的应用:综述。

Application of immobilized mycelium-based pellets for the removal of organochlorine compounds: a review.

机构信息

Department of Sanitary Engineering, State University of Santa Catarina, 2822 Dr Getúlio Vargas Road, Ibirama, Brazil E-mail:

Department of Environmental and Sanitary Engineering, State University of Santa Catarina, 2090 Luís de Camões Avenue, Lages, Brazil.

出版信息

Water Sci Technol. 2021 Apr;83(8):1781-1796. doi: 10.2166/wst.2021.093.

Abstract

Organochlorines have diverse structures and applications and are included in the list of persistent organic pollutants (POPs) due to their toxicity and environmental persistence. The reduced capacity of conventional wastewater treatment plants to remove these compounds encourages the development of cost-effective and efficient remediation approaches. Fungal biotechnology can contribute to the development of these technologies through their enzymatic machinery but faces several drawbacks related to the use of dispersed mycelium. In this sense, investigations concerning the degradation of organochlorines using immobilized fungi demonstrated an increase in contaminant removal efficiency compared with degradation by free cells. Despite this interest, the mechanisms of immobilized fungi have not been comprehensively reviewed. In this paper, recent advances of laboratory and field studies in organochlorine compounds removal by fungi are reviewed, focusing on the role of immobilization techniques. Firstly, the mechanisms of organochlorines bioconversion by fungi and the factors affecting enzyme activity are elucidated and discussed in detail. Then, the main targeted compounds, fungi, technics, and materials used for immobilization are discussed, as well as their advantages and limitations. Furthermore, critical points for future studies of fungi immobilization for organochlorine removal are proposed.

摘要

有机氯化合物具有多样的结构和应用,由于其毒性和环境持久性,被列入持久性有机污染物 (POPs) 清单。由于传统污水处理厂去除这些化合物的能力降低,因此鼓励开发具有成本效益和高效的修复方法。真菌生物技术可以通过其酶机制为这些技术的发展做出贡献,但在使用分散菌丝体方面存在一些缺点。在这方面,使用固定化真菌降解有机氯化合物的研究表明,与游离细胞降解相比,污染物去除效率有所提高。尽管对此很感兴趣,但固定化真菌的机制尚未得到全面审查。本文综述了近年来实验室和现场研究中真菌去除有机氯化合物的最新进展,重点介绍了固定化技术的作用。首先,详细阐明和讨论了真菌对有机氯化合物的生物转化机制以及影响酶活性的因素。然后,讨论了主要的目标化合物、真菌、技术和用于固定化的材料,以及它们的优点和局限性。此外,还提出了未来研究真菌固定化去除有机氯化合物的关键点。

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