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多环芳烃污染分布的最新趋势及生物修复应对策略

Recent trends in polycyclic aromatic hydrocarbons pollution distribution and counteracting bio-remediation strategies.

作者信息

Barathi Selvaraj, J Gitanjali, Rathinasamy Gandhimathi, Sabapathi Nadana, Aruljothi K N, Lee Jintae, Kandasamy Sabariswaran

机构信息

School of Chemical Engineering, Yeungnam University, Gyeongsan, 38541, Republic of Korea.

School of Information Technology and Engineering, Vellore Institute of Technology, Vellore, 63014, Tamil Nadu, India.

出版信息

Chemosphere. 2023 Oct;337:139396. doi: 10.1016/j.chemosphere.2023.139396. Epub 2023 Jul 3.

Abstract

Polycyclic aromatic hydrocarbons (PAHs) are distributed worldwide due to long-term anthropogenic pollution sources. PAHs are recalcitrant and highly persistent in the environment due to their inherent properties, such as heterocyclic aromatic ring structures, thermostability, and hydrophobicity. They are highly toxic, carcinogenic, immunotoxic, teratogenic, and mutagenic to various life systems. This review focuses on the unique data of PAH sources, exposure routes, detection techniques, and harmful effects on the environment and human health. This review provides a comprehensive and systematic compilation of eco-friendly biological treatment solutions for PAH remediation, such as microbial remediation approaches utilizing microbial cultures. In situ and Ex situ bioremediation of PAH methods, including composting land farming, biopiles, bioreactors bioaugmentation, and phytoremediation processes, are discussed in detail, as is a summary of the factors affecting and limiting PAH bioremediation. This review provides an overview of emerging technologies that use multi-process combinatorial treatment approaches and answers to generating value-added by-products during PAH remediation.

摘要

由于长期存在的人为污染源,多环芳烃(PAHs)在全球范围内广泛分布。由于其固有的特性,如杂环芳香环结构、热稳定性和疏水性,多环芳烃在环境中具有难降解性和高度持久性。它们对各种生命系统具有高毒性、致癌性、免疫毒性、致畸性和致突变性。本综述重点关注多环芳烃的来源、暴露途径、检测技术以及对环境和人类健康的有害影响等独特数据。本综述全面系统地汇编了用于多环芳烃修复的生态友好型生物处理解决方案,例如利用微生物培养物的微生物修复方法。详细讨论了多环芳烃原位和异位生物修复方法,包括堆肥、土地耕作、生物堆、生物反应器生物强化和植物修复过程,以及影响和限制多环芳烃生物修复的因素总结。本综述概述了使用多工艺组合处理方法的新兴技术,以及多环芳烃修复过程中产生增值副产品的相关解答。

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