Assessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa

dc.contributor.advisorEdokpayi, J. N.
dc.contributor.advisorAkintola, G. O.
dc.contributor.authorRambau, Mutshidzi Oudrey
dc.date2026
dc.date.accessioned2026-09-19T09:06:30Z
dc.date.issued2026-09-11
dc.descriptionMaster of Environmental Sciences
dc.descriptionDepartment of Geography and Environmental Sciences
dc.description.abstractAccess to safe drinking water remains a critical public health challenge in many rural communities in South Africa. In Madombidzha Village, Limpopo Province, many households rely on untreated borehole water and prolonged household storage, practices that may compromise water quality and increase health risks. This study aimed to administer 278 household questionnaires to assess water-use and storage practices. Forty water samples (20 borehole and 20 stored household samples) were collected during both wet and dry seasons and analyzed in triplicate to evaluate physicochemical parameters (including pH, electrical conductivity, total dissolved solids, turbidity, major ions, and trace metals) and microbiological indicators (total coliforms and Escherichia coli). Health risks were estimated using Quantitative Microbial Risk Assessment (QMRA). The results revealed significant seasonal and spatial deterioration in water quality. Physicochemical analysis showed pH values in both borehole (6.33–9.00) and stored water (5.89–9.70), with increased alkalinity during the dry season. Electrical conductivity and total dissolved solids were exceptionally high in many samples, frequently exceeding South African National Standards (SANS 241) limits, indicating severe mineralisation. Nitrate concentrations were extremely elevated in all boreholes (65.03–976.13 mg/L) and in most stored water samples (up to 379.89 mg/L), far exceeding recommended guidelines and posing a substantial risk of methemoglobinemia. Chloride levels also surpassed aesthetic thresholds in most sites, while sulphate and fluoride remained within acceptable limits. Magnesium concentrations exceeded recommended limits in several boreholes and storage containers, whereas sodium, potassium, and calcium were generally within acceptable ranges, with some site-specific variability. Most trace metals complied with SANS 241 limits, although isolated exceedances of zinc and lead were observed, likely linked to corrosion, geological mineralisation, and container leaching. Microbiological analysis showed widespread contamination. All boreholes tested positive for total coliforms, and 78% were contaminated with E. coli. Stored water exhibited further deterioration, with higher microbial loads observed particularly during the wet season, likely due to runoff, infiltration, and poor container hygiene. QMRA indicated a high annual probability of infection (0.5–1.0) among consumers of both borehole and stored water, with children at greatest risk. Overall, the findings demonstrate that borehole and stored household water in Madombidzha Village are unsafe
dc.format.extent1 online resource (xv, 71 leaves)
dc.identifier.apacitationRambau, M. O. (2026). <i>Assessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa</i>. (). . Retrieved from en_ZA
dc.identifier.chicagocitationRambau, Mutshidzi Oudrey. <i>"Assessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa."</i> ., , 2026. en_ZA
dc.identifier.citationRambau, M.O. 2026. Assessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa. . . en_ZA
dc.identifier.ris TY - Thesis AU - Rambau, Mutshidzi Oudrey AB - Access to safe drinking water remains a critical public health challenge in many rural communities in South Africa. In Madombidzha Village, Limpopo Province, many households rely on untreated borehole water and prolonged household storage, practices that may compromise water quality and increase health risks. This study aimed to administer 278 household questionnaires to assess water-use and storage practices. Forty water samples (20 borehole and 20 stored household samples) were collected during both wet and dry seasons and analyzed in triplicate to evaluate physicochemical parameters (including pH, electrical conductivity, total dissolved solids, turbidity, major ions, and trace metals) and microbiological indicators (total coliforms and Escherichia coli). Health risks were estimated using Quantitative Microbial Risk Assessment (QMRA). The results revealed significant seasonal and spatial deterioration in water quality. Physicochemical analysis showed pH values in both borehole (6.33–9.00) and stored water (5.89–9.70), with increased alkalinity during the dry season. Electrical conductivity and total dissolved solids were exceptionally high in many samples, frequently exceeding South African National Standards (SANS 241) limits, indicating severe mineralisation. Nitrate concentrations were extremely elevated in all boreholes (65.03–976.13 mg/L) and in most stored water samples (up to 379.89 mg/L), far exceeding recommended guidelines and posing a substantial risk of methemoglobinemia. Chloride levels also surpassed aesthetic thresholds in most sites, while sulphate and fluoride remained within acceptable limits. Magnesium concentrations exceeded recommended limits in several boreholes and storage containers, whereas sodium, potassium, and calcium were generally within acceptable ranges, with some site-specific variability. Most trace metals complied with SANS 241 limits, although isolated exceedances of zinc and lead were observed, likely linked to corrosion, geological mineralisation, and container leaching. Microbiological analysis showed widespread contamination. All boreholes tested positive for total coliforms, and 78% were contaminated with E. coli. Stored water exhibited further deterioration, with higher microbial loads observed particularly during the wet season, likely due to runoff, infiltration, and poor container hygiene. QMRA indicated a high annual probability of infection (0.5–1.0) among consumers of both borehole and stored water, with children at greatest risk. Overall, the findings demonstrate that borehole and stored household water in Madombidzha Village are unsafe DA - 2026-09-11 DB - ResearchSpace DP - Univen KW - E. coli KW - Stored water KW - Groundwater KW - Storage container KW - Water use pattern KW - Trace metal KW - Total coliforms LK - https://univendspace.univen.ac.za PY - 2026 T1 - Assessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa TI - Assessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa UR - ER - en_ZA
dc.identifier.urihttps://univendspace.univen.ac.za/handle/11602/3509
dc.identifier.vancouvercitationRambau MO. Assessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa. []. , 2026 [cited yyyy month dd]. Available from: en_ZA
dc.language.isoen
dc.relation.requiresPDF
dc.rightsUniversity of Venda
dc.subjectE. coli
dc.subjectUCTDen_ZA
dc.subjectGroundwater
dc.subjectStorage container
dc.subjectWater use pattern
dc.subjectTrace metal
dc.subjectTotal coliforms
dc.subjectWater quality
dc.titleAssessment of stored water quality and its implications on human health in the Madombidzha area, Limpopo Province, South Africa
dc.typeDissertation

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