巴西农药污染与饮用水处理综述:改进处理方法的必要性

IF 4.8 Q1 ENVIRONMENTAL SCIENCES ACS ES&T water Pub Date : 2024-08-15 DOI:10.1021/acsestwater.4c0006310.1021/acsestwater.4c00063
Laura O Cossu, Sérgio Francisco De Aquino, César Rossas Mota Filho, Cindy J Smith and Marta Vignola*, 
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引用次数: 0

摘要

地表水的农药污染是对饮用水安全的全球性威胁。本文以巴西为例,讨论了改进饮用水处理方法的必要性。巴西农业密集,农药消耗量大,而目前的饮用水处理方法不足以有效去除农药。现有的巴西地表水污染数据显示,天然水中普遍存在杀虫剂,这给水处理系统带来了压力,威胁着饮用水的质量和安全。饮用水中的杀虫剂浓度经常超过欧盟规定的最大允许浓度(0.1 微克/升),这突出表明了改进饮用水处理的必要性。(过去十年来,人们一直在深入研究去除农药的(先进)饮用水处理方法。然而,必须认真评估高成本、高能耗以及产生有害副产品等挑战。安全管理的饮用水对中低收入国家的可持续发展至关重要,只有通过适当的技术才能实现。工程生物过滤被认为是传统和先进饮用水处理的可持续替代技术。本综述强调了工程生物过滤的巨大潜力及其相关挑战。
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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Review on Pesticide Contamination and Drinking Water Treatment in Brazil: The Need for Improved Treatment Methods

Pesticide pollution of surface water is a global threat to drinking water safety. The need for improved drinking water treatment methods is discussed by using Brazil as a case study. Brazil’s agriculture is intensive, and pesticide consumption is high, while current drinking water treatment methods are inadequate for effectively removing pesticides. Available data on surface water contamination in Brazil show widespread occurrence of pesticides in natural waters, thereby putting pressure on the water treatment system and threatening the quality and safety of drinking water. Pesticide concentrations in drinking water frequently exceeded the maximum permissible concentrations if EU regulations (0.1 μg/L) were applied, highlighting the need for improvements in drinking water treatment. (Advanced) drinking water treatment for the removal of pesticides has been intensely researched over the past decade. However, challenges such as high cost and energy intensity, as well as the production of hazardous byproducts, must be assessed critically. Safely managed drinking water is crucial to the sustainable development of low- and middle-income countries and can be achieved only through appropriate technology. Engineered biofiltration has been put forward as a sustainable alternative to conventional and advanced drinking water treatment. This review highlights the promising potential of engineered biofiltration and its associated challenges.

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