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绿藻细胞壁及其在重金属去除中的作用。

The cell wall of green microalgae and its role in heavy metal removal.

机构信息

Department of Chemistry, Umeå University, Umeå.

出版信息

Physiol Plant. 2021 Oct;173(2):526-535. doi: 10.1111/ppl.13405. Epub 2021 Apr 4.

Abstract

Heavy metals in industrial wastewaters are posing a serious threat to the environment and to human health. Microalgae are increasingly being seen as potential solutions to this problem as they can remove pollutants through biosorption. This process offers certain advantages over other more traditional metal removal techniques as it is simple, inexpensive, eco-friendly, and can be performed over a wide range of experimental conditions. Biosorption is possible due to the unique and complex structure of the microalgal cell wall. The variety of functional groups on the surface of the cell wall (such as carboxyl or amino groups) can act as binding sites for the heavy metals, thus removing them from the environment. This review focuses on the cell wall composition and structure of the most commonly used microalgae in heavy metal removal and shows the role of their cell wall in the biosorption process. This review also aims to report the most commonly used models to predict the velocity of microalgal biosorption and the removal capacities.

摘要

工业废水中的重金属对环境和人类健康构成了严重威胁。微藻作为一种潜在的解决方案,正越来越受到关注,因为它们可以通过生物吸附去除污染物。与其他更传统的金属去除技术相比,该过程具有一定的优势,因为它简单、廉价、环保,并且可以在广泛的实验条件下进行。生物吸附是由于微藻细胞壁的独特而复杂的结构所致。细胞壁表面的各种功能基团(如羧基或氨基)可以作为重金属的结合位点,从而将其从环境中去除。本文综述了常用于重金属去除的微藻的细胞壁组成和结构,并展示了其细胞壁在生物吸附过程中的作用。本文还旨在报告最常用的模型,以预测微藻生物吸附的速度和去除能力。

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