Mechanistic action of pesticides on pests and their consequent effect on fishes and human health with remediation strategies

Anita Singh, Monika Mahajan, R. Kothari, Navinderdeep Singh, R. Singh
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引用次数: 2

Abstract

Population detonation and inflated demand for agricultural products have resulted in the rampant use of pesticides in recent years. These pesticides are used to reduce the number of pesticides by different mechanisms. They have been utilized in agriculture to expand agrarian profit, crop yield, quality, and storage life. The incessant and extensive use of resistant pesticides has contaminated the water bodies, fields, crops, and aquatic biota as well as poses a threat to human health. As a result, stringent regulations and limits are established to monitor the pesticide matrix. The current review focuses on pesticide contamination in the food chain, particularly from the aquatic bodies to fishes and humans. It also discusses strict regulations and limits including maximum residual limits for food items, acceptable daily intake, theoretical maximum daily intake, and estimated carcinogenicity/non-carcinogenicity for fishes and human health risks. In addition to conferring the negative effects of pesticides, this article discusses cost-effective remediation techniques such as phytoremediation, adsorption, the Fenton oxidation method, microalgal/high-rate algal ponds, and nanotechnology with the comparison of their remediation cost.
农药对害虫的作用机理及其对鱼类和人类健康的影响及补救策略
近年来,人口激增和对农产品需求的膨胀导致了农药的猖獗使用。这些农药通过不同的机制来减少农药的数量。它们已被用于农业,以扩大农业利润、作物产量、质量和储存寿命。抗药性农药的持续和广泛使用已经污染了水体、农田、作物和水生生物群,并对人类健康构成威胁。因此,制定了严格的法规和限制来监测农药基质。目前的审查侧重于食物链中的农药污染,特别是从水生生物到鱼类和人类的农药污染。它还讨论了严格的法规和限制,包括食品的最大残留限量、可接受的每日摄入量、理论最大每日摄入量,以及鱼类的估计致癌性/非致癌性和人类健康风险。除了农药的负面影响外,本文还讨论了具有成本效益的修复技术,如植物修复、吸附、Fenton氧化法、微藻/高速率藻池和纳米技术,并对其修复成本进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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