Waterborne diseases vulnerability analysis using fuzzy analytic hierarchy process: a case study of Azamgarh city, India

被引:0
作者
Uzma Ajmal
Saleha Jamal
Wani Suhail Ahmad
Md Ashif Ali
Md Babor Ali
机构
[1] Aligarh Muslim University,Department of Geography
来源
Modeling Earth Systems and Environment | 2022年 / 8卷
关键词
Waterborne diseases; Fuzzy AHP; Vulnerability analysis; WOA; WQI; GIS;
D O I
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学科分类号
摘要
This study presents the application of fuzzy analytic hierarchy process (FAHP) aided with geospatial analysis for identifying vulnerable zones to waterborne diseases in Azamgarh city, India. It synergistically employs two stages analyses; the first stage analyses eight determining criteria of waterborne diseases, five from socio-economic factors, one from criteria from drinking water (WQI) and two criteria from environmental factors to support the second stage analysis using FAHP. Moreover, weighted overlay analysis was utilised to produce final vulnerability map. The study of triangular fuzzy numbers and extent analysis shows that major responsible factors for controlling the distribution of waterborne diseases in the city are water quality index, irregular water supply and improper sanitation with 0.247, 0.204 and 0.194 weights respectively. The result shows that about 1.99% area in the city lies in very high vulnerability zone, 16.48% in high category, 37.11% in medium category, 37.30 in low category and 7.12% in very low category. Similarly, it has been found that most of the area under high vulnerable zones is found near the city centre in the central congested part of the city. Validation of the results with ground data of occurrence of waterborne diseases has shown that high incidence of waterborne diseases were in conformity with the most vulnerable zones of waterborne diseases. Hence, the current model to identify vulnerable zones to waterborne diseases is validated. The study result also suggests that the study approach adopted and its application process can be employed in other studies to identify vulnerable zones for various diseases.
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页码:2687 / 2713
页数:26
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共 196 条
[41]  
Kalaivani A(2016)Urbanization and human health in urban India: institutional analysis of water-borne diseases in Ahmedabad Health Policy Plan 92 641-241
[42]  
Drobne TA(2007)Epidemiological investigation of an outbreak of acute diarrhoeal disease using geographic information systems Trans R Soc Trop Med Hyg 363 34-594
[43]  
Lisec S(2006)The challenge of micropollutants in aquatic systems Science 3 229-236
[44]  
Ganaie WS(2018)Groundwater potential mapping by combining fuzzy-analytic hierarchy process and GIS in Beyşehir Lake Basin Turkey Arab J Geosci 11 583-undefined
[45]  
Jamal MR(2012)Association of socioeconomic features, hygienic status, age groups and gender with prevalence of waterborne diseases in Rawalpindi and Islamabad Sci Technol Dev 6 233-undefined
[46]  
Ahmad F(2014)Fuzzy AHP approach to selection problems in process engineering involving quantitative and qualitative aspects Process Saf Environ Prot 24 undefined-undefined
[47]  
Golabi CM(2013)Urinary schistosomiasis in children—still a concern in part of the ghanaian capital city Open J Med Microbiol 112 undefined-undefined
[48]  
Radmanesh KG(2004)Diarrhoea in children: an interface between developing and developed countries Lancet undefined undefined-undefined
[49]  
Halpenny VE(2013)Water quality assessment in terms of water quality index Am J Water Res undefined undefined-undefined
[50]  
Koski ME(1983)A fuzzy extension of Saaty's priority theory Fuzzy Sets Syst undefined undefined-undefined