Harnessing Solar Water Pumping Technologies for Sustainable Water Supply in Kenya: A Case Study of Kajiado Central Sub-County, Kenya. A Retrospective Baseline Study.

Kajiado County suffers from acute water scarcity caused by climate-driven droughts and surface-water deficits that severely threaten agro-pastoral livelihoods, forcing a reliance on groundwater extraction across unserved zones of Kajiado Central Sub-County. Weak regulatory oversight has led to uncoordinated, dense borehole clustering that causes localized static water tables to drop rapidly, while private water pricing strains household economies and unregulated extraction bypasses public health monitoring for hazardous geogenic fluoride. This study implements a comparative ex-post facto retrospective research design spanning a ten-year operational horizon (2015–2024) to evaluate the long-term performance of resource-efficient Solar Water Pumping Technology (SWPT) as an alternative to conventional diesel and grid regimes. Temporally, the study covers a ten-year horizon from 2015 to 2024 and relies exclusively on historic secondary datasets available as of December 2024; no projected or preliminary 2025 data are included. Synthesizing Common-Pool Resource (CPR) and Socio-Technical Systems (STS) theories, the study relies on archival secondary data sourced from the Kajiado County Ministry of Water, the Water Resources Authority (WRA), and public health registries, evaluated via the Mann–Kendall trend test, linear regression, and thematic analysis. The empirical findings reveal that transitioning to solar water pumping lowers operational costs by 60%–75% compared to diesel (SNV, 2022), yet the zero-marginal cost of solar power creates an economic incentive for unrestricted over-pumping that accelerates aquifer drawdown, while the clean energy transition exhibits a major health compliance gap by routinely distributing untreated water that exceeds the WHO 1.5 mg/L fluoride threshold (WHO, 2017). Technical upscaling must be legally bound to institutional governance; this study provides an empirical baseline for the Kajiado County Government to enforce spatial drilling limits, embed solarized frameworks into the County Integrated Development Plan (CIDP), and deploy mandatory solar-powered defluoridation units to ensure long-term climate resilience and public safety.

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-07-18
DOI
https://doi.org/10.5281/zenodo.21429228
Primary Topic
Child Nutrition and Water Access
Type
article
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Harnessing Solar Water Pumping Technologies for Sustainable Water Supply in Kenya: A Case Study of Kajiado Central Sub-County, Kenya. A Retrospective Baseline Study.

Zenodo (CERN European Organization for Nuclear Research)
Child Nutrition and Water Access
article

Harnessing Solar Water Pumping Technologies for Sustainable Water Supply in Kenya: A Case Study of Kajiado Central Sub-County, Kenya. A Retrospective Baseline Study.

article en

Abstract

Kajiado County suffers from acute water scarcity caused by climate-driven droughts and surface-water deficits that severely threaten agro-pastoral livelihoods, forcing a reliance on groundwater extraction across unserved zones of Kajiado Central Sub-County. Weak regulatory oversight has led to uncoordinated, dense borehole clustering that causes localized static water tables to drop rapidly, while private water pricing strains household economies and unregulated extraction bypasses public health monitoring for hazardous geogenic fluoride. This study implements a comparative ex-post facto retrospective research design spanning a ten-year operational horizon (2015–2024) to evaluate the long-term performance of resource-efficient Solar Water Pumping Technology (SWPT) as an alternative to conventional diesel and grid regimes. Temporally, the study covers a ten-year horizon from 2015 to 2024 and relies exclusively on historic secondary datasets available as of December 2024; no projected or preliminary 2025 data are included. Synthesizing Common-Pool Resource (CPR) and Socio-Technical Systems (STS) theories, the study relies on archival secondary data sourced from the Kajiado County Ministry of Water, the Water Resources Authority (WRA), and public health registries, evaluated via the Mann–Kendall trend test, linear regression, and thematic analysis. The empirical findings reveal that transitioning to solar water pumping lowers operational costs by 60%–75% compared to diesel (SNV, 2022), yet the zero-marginal cost of solar power creates an economic incentive for unrestricted over-pumping that accelerates aquifer drawdown, while the clean energy transition exhibits a major health compliance gap by routinely distributing untreated water that exceeds the WHO 1.5 mg/L fluoride threshold (WHO, 2017). Technical upscaling must be legally bound to institutional governance; this study provides an empirical baseline for the Kajiado County Government to enforce spatial drilling limits, embed solarized frameworks into the County Integrated Development Plan (CIDP), and deploy mandatory solar-powered defluoridation units to ensure long-term climate resilience and public safety.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 9%
Child Nutrition and Water Access
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