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对环境中农药的命运和持久性的包容观点,以及用于降解它们的综合生态技术。

An inclusive outlook on the fate and persistence of pesticides in the environment and integrated eco-technologies for their degradation.

机构信息

Department of Microbiology, K. J. Somaiya College of Arts, Commerce, and Science, Kopargaon, Maharashtra 423601, India.

Department of Environmental Science, Parul Institute of Applied Sciences, Parul University, Vadodara, Gujarat 391760, India.

出版信息

Toxicol Appl Pharmacol. 2023 May 1;466:116449. doi: 10.1016/j.taap.2023.116449. Epub 2023 Mar 15.

Abstract

Intensive and inefficient exploitation of pesticides through modernized agricultural practices has caused severe pesticide contamination problems to the environment and become a crucial problem over a few decades. Due to their highly toxic and persistent properties, they affect and get accumulated in non-target organisms, including microbes, algae, invertebrates, plants as well as humans, and cause severe issues. Considering pesticide problems as a significant issue, researchers have investigated several approaches to rectify the pesticide contamination problems. Several analyses have provided an extensive discussion on pesticide degradation but using specific technology for specific pesticides. However, in the middle of this time, cleaner techniques are essential for reducing pesticide contamination problems safely and environmentally friendly. As per the research findings, no single research finding provides concrete discussion on cleaner tactics for the remediation of contaminated sites. Therefore, in this review paper, we have critically discussed cleaner options for dealing with pesticide contamination problems as well as their advantages and disadvantages have also been reviewed. As evident from the literature, microbial remediation, phytoremediation, composting, and photocatalytic degradation methods are efficient and sustainable and can be used for treatment at a large scale in engineered systems and in situ. However, more study on the bio-integrated system is required which may be more effective than existing technologies.

摘要

通过现代化农业实践,密集而低效地使用农药,已经对环境造成了严重的农药污染问题,这在几十年间已经成为一个关键问题。由于它们具有高度毒性和持久性,这些农药会影响并在非目标生物中积累,包括微生物、藻类、无脊椎动物、植物以及人类,并导致严重问题。考虑到农药问题是一个重大问题,研究人员已经研究了几种方法来纠正农药污染问题。有几项分析对农药降解进行了广泛的讨论,但使用的是针对特定农药的特定技术。然而,在这个过程中,安全和环保地减少农药污染问题的清洁技术至关重要。根据研究结果,没有一项单一的研究结果提供了关于污染场地修复的具体清洁策略的具体讨论。因此,在这篇综述论文中,我们批判性地讨论了处理农药污染问题的清洁选择,以及它们的优缺点也进行了回顾。从文献中可以明显看出,微生物修复、植物修复、堆肥和光催化降解方法是高效和可持续的,可以在工程系统和原位中大规模用于处理。然而,需要对生物集成系统进行更多的研究,这可能比现有技术更有效。

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