Innovative Approaches for Minimizing Disinfection Byproducts (DBPs) in Water Treatment: Challenges and Trends

Инновационные подходы к минимизации побочных продуктов дезинфекции (DBP) в очистке воды: проблемы и тенденции
Spyridon K. Golfinopoulos, Anastasia D. Nikolaou, Dimitrios Ε. Alexakis
2024-09-11

UV/H2O2advanced oxidation processes (AOPs)disinfection byproducts (DBPs)membrane-based filtrationnatural organic matter (NOM)
Growing concerns over public health and environmental safety have intensified the focus on minimizing harmful disinfection byproducts (DBPs) in water treatment. Traditional methods like chlorination, while effective against pathogens, often lead to the formation of DBPs, which pose significant risks. This paper explores alternative strategies to reducing DBP formation while ensuring effective disinfection. The methodology involved a bibliographic study conducted through the Scopus platform, using appropriate keywords. The initial search yielded 9576 articles from the period 2020 to 2024. The key approaches identified include advanced oxidation processes (AOPs) such as UV/H2O2 and ozone, which mineralize natural organic matter (NOM) and minimize chemical use and sludge production; membrane-based filtration systems, like reverse osmosis, effectively removing contaminants without chemical disinfectants, reducing DBP risks. Furthermore, conventional processes, such as coagulation and filtration, serve as crucial pretreatment steps to lower NOM levels before disinfection. Additionally, optimizing chlorine dosing, using non-chlorine disinfectants, and employing post-disinfection methods like adsorption and biological filtration further mitigate DBP formation. Finally, the integration of artificial intelligence in process optimization is emerging as a promising tool for enhancing treatment efficiency and safety. This research contributes to the development of safer, more sustainable water treatment solutions, addressing regulatory demands and public health objectives.
1
Advanced oxidation processes (AOPs) like UV/H2O2 and ozone mineralize natural organic matter (NOM), minimizing chemical use and sludge production while reducing DBP formation.
2
Conventional coagulation and filtration are important pretreatment steps to lower NOM levels before disinfection, thereby reducing DBP precursors.
3
Integration of artificial intelligence for process optimization is an emerging promising tool to enhance treatment efficiency and safety in DBP control.
4
Membrane-based filtration systems, including reverse osmosis, remove contaminants without chemical disinfectants, effectively reducing DBP risks.
5
Optimizing chlorine dosing, using non-chlorine disinfectants, and applying post-disinfection methods (adsorption, biological filtration) further mitigate DBP formation.

Water treatment processes aimed at disinfection and DBP control

Strategies and approaches to minimize formation of disinfection byproducts (DBPs) while ensuring effective pathogen removal, including AOPs, membrane filtration, coagulation/filtration pretreatment, dosing optimization, alternative disinfectants, post-disinfection methods, and AI-based process optimization

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2024-09-11
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Spyridon K. Golfinopoulos
Anastasia D. Nikolaou
Dimitrios Ε. Alexakis
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