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用于生物吸附的固定化微生物纳米颗粒

Immobilized microbial nanoparticles for biosorption.

作者信息

Giese Ellen C, Silva Debora D V, Costa Ana F M, Almeida Sâmilla G C, Dussán Kelly J

机构信息

Service of Extractive Metallurgy and Bioprocesses, Centre for Mineral Technology, CETEM, Rio de Janeiro, Brazil.

Department of Biochemistry and Organic Chemistry, Institute of Chemistry, São Paulo State University-UNESP, Araraquara, São Paulo, Brazil.

出版信息

Crit Rev Biotechnol. 2020 Aug;40(5):653-666. doi: 10.1080/07388551.2020.1751583. Epub 2020 Apr 16.

Abstract

Biosorption processes emerge as an economical and eco-friendly alternative technology for the removal of pollutants present in the environment. One biosorption process application is found in the immobilization of microbial cells for the removal of toxic pollutants in industrial wastewater. The immobilization of microorganisms on magnetic nano-based carriers is a relevant new technique applied to obtain biocatalysts for environmental pollution control, however, it has been little described in the literature. Magnetic nanoparticles present several advantages when compared to suspended microorganism technology and conventional methods of cell immobilization, such as simple recovery of catalysts from the liquid phase. Considering the relevant application of magnetic nanoparticles as a support for microorganism immobilization, this review aims to present potential studies in the immobilization of bacteria, yeast, and fungi on magnetic nano-based carriers. Immobilization carriers and methods are highlighted and discussed based on their strengths and drawbacks. Isotherm and kinetic models are presented. This review also highlights the application of immobilized microbial nanoparticles in the removal of heavy metals from the environment. The state-of-the art of biosorption technology applying magnetically immobilized cells is presented in this review and provides insights into this research area.

摘要

生物吸附过程作为一种经济且环保的替代技术,用于去除环境中存在的污染物而出现。生物吸附过程的一个应用是固定化微生物细胞以去除工业废水中的有毒污染物。将微生物固定在磁性纳米载体上是一种用于获得环境污染控制生物催化剂的相关新技术,然而,该技术在文献中的描述很少。与悬浮微生物技术和传统细胞固定方法相比,磁性纳米颗粒具有几个优点,例如从液相中简单回收催化剂。考虑到磁性纳米颗粒作为微生物固定化载体的相关应用,本综述旨在介绍在磁性纳米载体上固定化细菌、酵母和真菌的潜在研究。基于固定化载体和方法的优缺点对其进行了重点介绍和讨论。还介绍了等温线和动力学模型。本综述还强调了固定化微生物纳米颗粒在从环境中去除重金属方面的应用。本综述介绍了应用磁性固定化细胞的生物吸附技术的最新进展,并为该研究领域提供了见解。

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