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- W4214931897 abstract "Wastewater arises due to the impairment of water by anthropogenic activities. Growing industries, expanding municipal establishments and agricultural activities have imparted a colossal load to our natural water resources. Wastewater generated by anthropogenic activities is treated using wastewater treatment plants. These treatment plants have disadvantages like a slow rate of treatment and the need for human resources. Fenton reaction-based advanced oxidation processes have gained immense attention over recent years. The basic principle of Fenton reaction is the generation of highly reactive hydroxyl ions in an acidic environment using hydrogen peroxide and ferrous ion as a catalyst. Electro- and photo-Fenton processes are the advanced type of Fenton reaction assisted by electrochemical reaction and light energy respectively. Fenton processes can effectively act on wastewater with high organic pollutants. Advanced oxidation is a process of oxidative decomposition that has been successfully tested to reduce total organic carbon, chemical oxygen demand and biochemical oxygen demand in industrial wastewater. Advancement in a bioreactor has aided in developing wastewater remediation models for the degradation of wastewater generated from various anthropogenic sources. Fenton reaction-based bioremediation techniques are inexpensive and require less reaction time compared to other bio-oxidation systems. The Fenton reaction-based advanced oxidation process is a sustainable technique for water remediation since it requires no energy to activate hydrogen peroxide or catalyst and has no mass transfer limitation. This chapter details the principles and processes of photo- and electro-Fenton reaction and their feasibility to remediate recalcitrant organic pollutants in wastewater." @default.
- W4214931897 created "2022-03-05" @default.
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- W4214931897 date "2022-03-03" @default.
- W4214931897 modified "2023-09-23" @default.
- W4214931897 title "Electro- and Photo-Fenton-Based Techniques in Wastewater Treatment for Advanced Oxidation of Recalcitrant Pollutants" @default.
- W4214931897 doi "https://doi.org/10.1201/9781003165958-2" @default.
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