Author:
Masroor Kazhal,Kermani Majid,Gholami Mitra,Fanaei Farzad,Arfaeinia Hossein,Nemati Sepideh,Tahmasbizadeh Masoumeh
Abstract
AbstractThe transfer of water from the source to the consumption point is always associated with the possibility of contamination in any of its various components. To resolve this problem, the World Health Organization has considered a water safety plan. The purpose of this study is to implement water safety plan in the water supply system of Bukan city. This study was performed on Bukan’s water supply system in 2019–20 using a software to guarantee the quality of the water safety plan and the WHO and IWA guidelines. The software checklists were prepared and after confirming the validity of the translation and its facial and content validity, it was completed based on the records of the Water and Sewerage Company and interviews with experts. Out of a total of 440 points of full-application of the program and 392 points for the reviewed phases, 183.6 points were acquired and 43.7% of WSP-coordinated implementation was observed. The highest percentage of WSP-coordinated implementation (75.2%) was assigned to the validation stage with the highest point, and the support program stage had the lowest percentage of performance (1.1%). Among the major components of the water supply system, the final consumption point received the most attention from the system. Given the lifespan of the introduction and use of WSP in the world, it was expected that better results would be obtained from evaluating the implementation and progress of this approach in Bukan’s water supply system. However, the implementation rate of this program in this city compared to other cities in Iran, showed that according to the implementation time (one year), the obtained results are relatively convincing and good and the water supply system has a moderate level of safety.
Publisher
Springer Science and Business Media LLC
Subject
Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Pollution,Waste Management and Disposal,Water Science and Technology,Applied Microbiology and Biotechnology,Environmental Engineering
Reference37 articles.
1. Boyd CE. Water quality: an introduction. Berlin: Springer Nature; 2019.
2. Yousefi M, Ghalehaskar S, Asghari FB, Ghaderpoury A, Dehghani MH, Ghaderpoori M, et al. Distribution of fluoride contamination in drinking water resources and health risk assessment using geographic information system, northwest Iran. Regul Toxicol Pharmacol. 2019;107:104408.
3. Yousefi M, Ghoochani M, Mahvi AH. Health risk assessment to fluoride in drinking water of rural residents living in the Poldasht city, Northwest of Iran. Ecotoxicol Environ Saf. 2018;148:426–30.
4. Rao V, Yoshida M, Parkash B, Chandrasekhar S, Kumar M Environmental impact of human activities to urban lake sediments: Potentially Toxic Elements (PTEs) contamination in Hussainsagar Lake, Hyderabad. In: The 11th National Symposium on Hydrology, 2004. pp 1–9.
5. Seelen LM, Flaim G, Jennings E, Domis LNDS. Saving water for the future: Public awareness of water usage and water quality. J Environ Manag. 2019;242:246–57.
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