对地表水,地下水和饮用水处理厂中药物的检测,发生和建模的全面见解

IF 5.4 Q2 ENGINEERING, ENVIRONMENTAL
Sanjeeb Mohapatra , Xuneng Tong , Santanu Mukherjee , Monika Dubey , Sachin Subhash , You Luhua , Jan Peter van der Hoek , Karina Yew-Hoong Gin
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引用次数: 0

摘要

由于其对植物、动物和人类健康的急性和慢性毒性影响,药品在全球范围内受到了广泛的科学和社会经济关注。然而,人们对水生环境中药物混合物的地理分布和季节性变化的研究仍然不足,尤其是在资源匮乏的国家。本综述深入分析了过去五年中在地表水、地下水和饮用水中检测到的药物,尤其是抗生素的季节性出现情况。文章讨论了传统和先进饮用水处理工艺的有效性,重点关注饮用水处理厂(DWTPs)通常采用的吸附和臭氧处理工艺。研究结果表明,全球饮用水中抗生素和其他药物的中位浓度往往超过地下水中的水平。这突出表明,迫切需要对水生系统,尤其是 DWTPs 中的抗生素进行全球范围的长期监测。除靶向分析外,非靶向分析 (NTA) 也应纳入 DWTPs 的常规水质监测中,以识别新型污染物,包括含氟药物。最后,本综述概述了基于过程和数据驱动的药物发生、归宿和迁移模型,作为取样和实验室规模实验的补充方法,尤其是在资源有限的环境中。加强长期监测、扩大处理方案、整合建模工具以及促进绿色化学创新对于降低风险和保护水质至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comprehensive insights on the detection, occurrence and modelling of pharmaceuticals in surface water, groundwater, and drinking water treatment plants

Comprehensive insights on the detection, occurrence and modelling of pharmaceuticals in surface water, groundwater, and drinking water treatment plants
Pharmaceuticals have received extensive scientific and socio-economic attention worldwide due to their acute and chronic toxic effects on plants, animals, and human health. However, the geographical distribution and seasonal variability of pharmaceutical mixtures in aquatic environments remain underexplored, especially in resource-deficient countries. The present review provides an in-depth analysis of the seasonal occurrence of pharmaceuticals, particularly antibiotics detected over the last five years in surface water, groundwater, and drinking water. The effectiveness of the conventional and advanced drinking water treatment processes is discussed with a focus on the adsorption and ozonation processes, commonly employed at drinking water treatment plants (DWTPs). Findings reveal median concentrations of antibiotics and other pharmaceuticals in drinking water worldwide, often exceeding their levels in groundwater. This underscores the urgent need for global-scale, long-term monitoring of antibiotics in aquatic systems, especially in DWTPs. Beyond targeted analysis, non-targeted analysis (NTA) should be integrated into routine water quality monitoring at DWTPs to identify novel contaminants, including fluorinated pharmaceuticals. Finally, this review provides an overview concerning the process-based and data-driven modelling of pharmaceutical occurrence, fate, and transport as a complementary approach to sampling and lab-scaled experiments, especially in resource-limited settings. Strengthening long-term monitoring, expanding treatment solutions, integrating modelling tools, and promoting green chemistry innovations are crucial to mitigating risks and safeguarding water quality.
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来源期刊
Journal of hazardous materials advances
Journal of hazardous materials advances Environmental Engineering
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