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Titlebook: Applications of Advanced Oxidation Processes (AOPs) in Drinking Water Treatment; Antonio Gil,Luis Alejandro Galeano,Miguel Ángel Vi Book 2

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Inactivation of , by Advanced Oxidation Processes,attributed to its low infectious dose and its resistance to environmental stress and conventional disinfection processes. Since . oocysts are highly resistant to chlorine, the most applied water disinfectant, alternative disinfectants were proposed and applied to reduce the health risks of . in wate
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Cost-Effective Catalytic Materials for AOP Treatment Units,atalyst activity, selectivity, stability, simplicity of preparation, preparation time, cost, nontoxicity, availability, recycling capability, environmental suitability, etc. can be the important parameters in the catalyst selection. High costs, cumbersome preparations, and environmental unsuitabilit
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https://doi.org/10.1007/0-387-29419-8ddress the impact of NOM in aqueous systems. Among these, advanced oxidation processes (AOPs) refer to oxidation processes that result in the formation of highly reactive radical species. This chapter presents an overview of recent research studies dealing with photon-activated AOPs for the removal of NOM and emerging contaminants in water.
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https://doi.org/10.1007/978-3-642-24952-5g the concentration of micropollutants. The data presented here proved also that AOPs are effective in the inactivation of . and other waterborne pathogens. Therefore AOPs can be applied as a barrier for reducing the health risks of waterborne ..
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