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A Green Approach to Safe Domestic Drinking Water Supply by Using Solar Geyser Publisher



Rabbani D1, 2 ; Mahvi AH3, 4 ; Shaterian M5 ; Hesamifard R1 ; Ghalhari MR3 ; Kabiri M1 ; Mostafaii G1, 2
Authors
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Authors Affiliations
  1. 1. Social Determinants of Health (SDH) Research Center, Kashan University of Medical Sciences, Kashan, Iran
  2. 2. Department of Environmental Health Engineering, School of Health, Kashan University of Medical Sciences, Kashan, Iran
  3. 3. Department of Environmental Health Engineering, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran
  4. 4. Center for Solid Waste Research, Institute for Environmental Research, Tehran University of Medical Sciences, Tehran, Iran
  5. 5. Department of Chemistry, Faculty of Science, University of Zanjan, Zanjan, Iran

Source: Journal of Environmental Health and Sustainable Development Published:2022


Abstract

Introduction: Accessibility to safe drinking water is an important human health issue, so water reuse and water resources management are critical in arid parts of developing regions. This study aimed to investigate the use of a combined simple designed solar geyser/photocell for drinking water disinfection. Materials and Methods: In this study, a solar geyser with a simple design was combined with a solar cell and its efficiency on the disinfection of contaminated water was investigated. This study was carried out with artificially polluted tap water by a solar geyser joined with a solar photovoltaic cell. The heated water (55°C) was kept for 2 hours using a solenoid valve. The pilot plant was operated and monitored for one year. The volume of the collected effluent was measured every 24 h. The most probably number (MPN) of total coliforms and fecal coliforms in 100 mL of 24-hour composed samples were measured. Results: The mean volume of disinfected water production was calculated as 2095.74 ± 270.28 mL/day. The strongest correlation was found between disinfected water and the maximum daily ambient air temperature with a linear model (R2 = 0.9937). The results showed that by increasing the sunny time, the volume of water outlet increased. Therefore, sunny time and UV radiation have direct effect on volume of disinfected water. Conclusion: The simple designed solar geyser for drinking water disinfection was efficient and recommended for tropical areas, emergency conditions, and farms for agricultural activities © 2022, Journal of Environmental Health and Sustainable Development. All Rights Reserved.
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