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    전기응집을 이용한 비소 오염수 처리 기술의 국내와 베트남 현장 실증 사례 = Field Demonstrations of Electrocoagulation in Arsenic-Contaminated Water Treatment in South Korea and Vietnam

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    https://www.riss.kr/link?id=A109984592

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    This technical report reviews recent advances in electrocoagulation (EC) for use in arsenic removal and highlights field demonstrations in South Korea and Vietnam. Fe-based EC has emerged as a simple, cost-effective method that reliably realizes the World Health Organization (WHO) drinking water guideline of 10 µg/L. Improved processes, such as air-cathode EC and ultrasound oxidation, considerably accelerate the treatment rate. Field applications in South Korea, including the Geumjeong mine, Bonghwa, and naturally contaminated groundwater in Chungnam, confirmed that Fe-based EC consistently satisfied the WHO standard in mining effluent and naturally contaminated groundwater. In Vietnam, EC was applied at household and community scales, demonstrating stable operation and providing safe drinking water for tens to hundreds of residents. Coupling with solar power enabled reliable performances in areas with limited infrastructure. These demonstrations highlight the practicality and scalability of EC as a key technology for use in decentralized water treatment and safe water supply.
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    This technical report reviews recent advances in electrocoagulation (EC) for use in arsenic removal and highlights field demonstrations in South Korea and Vietnam. Fe-based EC has emerged as a simple, cost-effective method that reliably realizes the W...

    This technical report reviews recent advances in electrocoagulation (EC) for use in arsenic removal and highlights field demonstrations in South Korea and Vietnam. Fe-based EC has emerged as a simple, cost-effective method that reliably realizes the World Health Organization (WHO) drinking water guideline of 10 µg/L. Improved processes, such as air-cathode EC and ultrasound oxidation, considerably accelerate the treatment rate. Field applications in South Korea, including the Geumjeong mine, Bonghwa, and naturally contaminated groundwater in Chungnam, confirmed that Fe-based EC consistently satisfied the WHO standard in mining effluent and naturally contaminated groundwater. In Vietnam, EC was applied at household and community scales, demonstrating stable operation and providing safe drinking water for tens to hundreds of residents. Coupling with solar power enabled reliable performances in areas with limited infrastructure. These demonstrations highlight the practicality and scalability of EC as a key technology for use in decentralized water treatment and safe water supply.

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