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高级生物技术策略用于土壤中持久性有机污染物和有毒元素的解毒。

Advanced biotechnology strategies for detoxification of persistent organic pollutants and toxic elements in soil.

机构信息

School of Geography and Resources Science, Neijiang Normal University, Neijiang, 641100, China.

School of Geography and Resources Science, Neijiang Normal University, Neijiang, 641100, China.

出版信息

Chemosphere. 2023 Dec;345:140519. doi: 10.1016/j.chemosphere.2023.140519. Epub 2023 Oct 21.

Abstract

This paper aims to comprehensively examine and present the current state of persistent organic pollutants (POPs) and toxic elements (TEs) in soil. Additionally, it seeks to assess the viability of employing advanced biotechnology, specifically phytoremediation with potent microbial formulations, as a means of detoxifying POPs and TEs. In the context of the "global treaty," which is known as the Stockholm Convention, we analyzed the 3D chemical structures of POPs and its prospects for living organisms which have not been reviewed up to date. The obstacles associated with the phytoremediation strategy in biotechnology, including issues like slow plant growth and limited efficiency in contaminant uptake, have also been discussed and demonstrated. While biotechnology is recognized as a promising method for detoxifying persistent organic pollutants (POPs) and facilitating the restoration of contaminated and degraded lands, its full potential in the field is constrained by various factors. Recent advances in biotechnology, such as microbial enzymes, designer plants, composting, and nanobiotechnology techniques, have opened up new avenues for mitigating persistent organic pollutants (POPs) and toxic elements (TEs). The insights gained from this review can contribute to the development of innovative, practical, and economically viable approaches for remediating and restoring soils contaminated with persistent organic pollutants (POPs) and toxic elements (TEs). The ultimate aim is to reduce the risks to both human and environmental health.

摘要

本文旨在全面研究和呈现土壤中持久性有机污染物(POPs)和有毒元素(TEs)的现状,并评估采用先进生物技术(特别是具有强效微生物配方的植物修复)来去除 POPs 和 TEs 的可行性。在被称为《斯德哥尔摩公约》的“全球条约”背景下,我们分析了持久性有机污染物的 3D 化学结构及其对尚未进行审查的生物的前景。本文还讨论并展示了生物技术中植物修复策略所面临的障碍,包括植物生长缓慢和污染物吸收效率有限等问题。尽管生物技术被认为是一种有前途的去除持久性有机污染物(POPs)和促进污染及退化土地恢复的方法,但由于各种因素的限制,其在该领域的全部潜力尚未得到充分发挥。生物技术的最新进展,如微生物酶、设计植物、堆肥和纳米生物技术技术,为减轻持久性有机污染物(POPs)和有毒元素(TEs)开辟了新途径。本综述获得的见解有助于开发创新性、实用性和经济上可行的方法来修复和恢复受持久性有机污染物(POPs)和有毒元素(TEs)污染的土壤,最终目的是降低对人类和环境健康的风险。

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