4.7 Article

Solar water disinfection in large-volume containers: from the laboratory to the field. A case study in Tigray, Ethiopia

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SCIENTIFIC REPORTS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-022-23709-5

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  1. European Union [H2020 GA 688928]

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The lack of safe drinking water is a major issue in low-to-medium-income countries. This study successfully scaled up the Solar Water Disinfection (SODIS) process from standard 2 L bottles to 25 L transparent jerrycans and implemented it in Tigray, Ethiopia for 12 months. The results demonstrated that increasing the volume of the SODIS water containers can lead to safer drinking water in a sustainable and user-friendly manner.
The lack of safe drinking water affects communities in low-to-medium-income countries most. This barrier can be overcome by using sustainable point-of-use water treatments. Solar energy has been used to disinfect water for decades, and several efforts have been made to optimise the standard procedure of solar water disinfection (SODIS process). However, the Health Impact Assessment of implementing advanced technologies in the field is also a critical step in evaluating the success of the optimisation. This work reports a sustainable scaling-up of SODIS from standard 2 L bottles to 25 L transparent jerrycans (TJC) and a 12-month field implementation in four sites of Tigray in Ethiopia, where 80.5% of the population lives without reliable access to safe drinking water and whose initial baseline average rate of diarrhoeal disease in children under 5 years was 13.5%. The UVA dose required for 3-log reduction of E. coli was always lower than the minimum UVA daily dose received in Tigray (9411 +/- 55 Wh/m(2)). Results confirmed a similar decrease in cases of diarrhoea in children in the implementation (25 L PET TJC) and control (2 L PET bottles) groups, supporting the feasibility of increasing the volume of the SODIS water containers to produce safer drinking water with a sustainable and user-friendly process.

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