Md Ashik Ahmed, Sumaya Tabassum, Debo Brata Paul Argha, Pranta Roy
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Different treatment methods, like chlorination, ozonation, and UV disinfection, are carefully examined to see how they affect the formation of DON and DBP. Factors that sway DON's impact on DBP formation are also explored. The review also presents various DBP mitigation techniques, spanning physical, chemical, and biological treatment methods, their efficacy in curtailing DON's influence, and their potential pros and cons. It addresses challenges, outlines future research directions, identifies knowledge gaps, and highlights the necessity for regulatory measures and policies, providing recommendations for prospective research avenues. It is clear from this in-depth review that more research is needed to understand how DON affects the formation of DBP entirely. It is also essential to protect human health and the environment and follow the rules first when treating wastewater. In conclusion, it analyzes DON's part in forming DBP in water and wastewater treatment. 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Dissolved organic nitrogen (DON) serves as a recognized precursor to DBP formation, which can potentially jeopardize human health. This review article offers a comprehensive insight into DON's influence on DBP formation during water and wastewater treatment processes. It delves into DON's sources, properties, and concentrations in water and wastewater, underlining the variability dependent on water source and environmental conditions. The mechanisms of DBP formation from DON, encompassing formation pathways and influencing factors, are meticulously examined. Different treatment methods, like chlorination, ozonation, and UV disinfection, are carefully examined to see how they affect the formation of DON and DBP. Factors that sway DON's impact on DBP formation are also explored. The review also presents various DBP mitigation techniques, spanning physical, chemical, and biological treatment methods, their efficacy in curtailing DON's influence, and their potential pros and cons. 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引用次数: 0
摘要
水和废水处理过程中形成的消毒副产物(DBP)是公众健康和环境保护的首要问题。溶解性有机氮 (DON) 是公认的 DBP 形成的前体物质,可能会危害人类健康。这篇综述文章全面介绍了 DON 在水和废水处理过程中对 DBP 形成的影响。文章深入探讨了 DON 的来源、特性以及在水和废水中的浓度,强调了 DON 因水源和环境条件而产生的变化。书中仔细研究了 DON 形成 DBP 的机理,包括形成途径和影响因素。仔细研究了不同的处理方法,如氯化、臭氧和紫外线消毒,以了解它们如何影响 DON 和 DBP 的形成。此外,还探讨了影响 DON 对 DBP 形成的因素。综述还介绍了各种 DBP 减缓技术,包括物理、化学和生物处理方法,它们在减少 DON 影响方面的功效,以及潜在的利弊。综述探讨了所面临的挑战,概述了未来的研究方向,确定了知识差距,强调了监管措施和政策的必要性,并对未来的研究途径提出了建议。从这篇深入的综述中可以清楚地看出,需要进行更多的研究来了解 DON 如何完全影响 DBP 的形成。在处理废水时,保护人类健康和环境并首先遵守规则也是至关重要的。总之,本研究分析了 DON 在水和废水处理中形成 DBP 的作用。这强调了持续研究和缓解策略的必要性,以保护公众健康和水质。
Impact of Dissolved Organic Nitrogen (DON) to the Formation of Disinfection Byproducts (DBP) During Water/Wastewater Treatment: A Review.
Disinfection byproduct (DBP) formation during water and wastewater treatment is a paramount concern for public health and environmental preservation. Dissolved organic nitrogen (DON) serves as a recognized precursor to DBP formation, which can potentially jeopardize human health. This review article offers a comprehensive insight into DON's influence on DBP formation during water and wastewater treatment processes. It delves into DON's sources, properties, and concentrations in water and wastewater, underlining the variability dependent on water source and environmental conditions. The mechanisms of DBP formation from DON, encompassing formation pathways and influencing factors, are meticulously examined. Different treatment methods, like chlorination, ozonation, and UV disinfection, are carefully examined to see how they affect the formation of DON and DBP. Factors that sway DON's impact on DBP formation are also explored. The review also presents various DBP mitigation techniques, spanning physical, chemical, and biological treatment methods, their efficacy in curtailing DON's influence, and their potential pros and cons. It addresses challenges, outlines future research directions, identifies knowledge gaps, and highlights the necessity for regulatory measures and policies, providing recommendations for prospective research avenues. It is clear from this in-depth review that more research is needed to understand how DON affects the formation of DBP entirely. It is also essential to protect human health and the environment and follow the rules first when treating wastewater. In conclusion, it analyzes DON's part in forming DBP in water and wastewater treatment. This emphasizes the need for ongoing research and mitigation strategies to protect public health and water quality.