Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia

Irrigation plays a crucial role in enhancing food production, increasing land productivity, and improving the livelihoods of smallholder farmers in Sub-Saharan Africa (SSA). Solar pumps and water harvesting ponds have emerged as promising technologies for sustainable agriculture for smallholders in...

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Main Authors: Negera, M., Dejen, Z. A., Melaku, Dagmawi, Tegegne, Desalegn, Adamseged, Muluken Elias, Haileslassie, Amare
Format: Journal Article
Language:Inglés
Published: MDPI 2025
Subjects:
Online Access:https://hdl.handle.net/10568/173237
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author Negera, M.
Dejen, Z. A.
Melaku, Dagmawi
Tegegne, Desalegn
Adamseged, Muluken Elias
Haileslassie, Amare
author_browse Adamseged, Muluken Elias
Dejen, Z. A.
Haileslassie, Amare
Melaku, Dagmawi
Negera, M.
Tegegne, Desalegn
author_facet Negera, M.
Dejen, Z. A.
Melaku, Dagmawi
Tegegne, Desalegn
Adamseged, Muluken Elias
Haileslassie, Amare
author_sort Negera, M.
collection Repository of Agricultural Research Outputs (CGSpace)
description Irrigation plays a crucial role in enhancing food production, increasing land productivity, and improving the livelihoods of smallholder farmers in Sub-Saharan Africa (SSA). Solar pumps and water harvesting ponds have emerged as promising technologies for sustainable agriculture for smallholders in SSA and beyond. The socio-economic impacts of these systems are less studied in the existing literature. This study examined the agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on income and food security among smallholder farmers in the Central Rift Valley, Lake Hawassa, and Upper Awash sub-basin areas in Ethiopia. Data were collected from 161 farming households that were selected randomly from woredas where solar pump and water harvesting pond irrigation systems had been implemented. The sample size was determined using the power calculation method. Bio-physical observation and measurements were also conducted at field levels. The benefit–cost ratio (BCR) and net water value (NWV) from the use of solar pump and water harvesting pond irrigations were analyzed to assess the viability of these systems. The household food consumption score (HFCS) and household dietary diversity score (HDDS) were calculated to measure food security, while the revenue from crop production was used to measure crop income. An endogenous switching regression model was applied to address the endogeneity nature of the adoption of the irrigation technologies. The counterfactual analysis, specifically the Average Treatment Effect on the Treated (ATT), was used to evaluate the impacts of the irrigation technologies on income and food security. Results indicate that the ATT of crop income, HFCS, and HDDS are positive and statistically significant, illustrating the role of these irrigation systems in enhancing smallholder farmers’ welfare. Moreover, smallholder farmers’ solar pump irrigation systems were found to be economically viable for few crops, with a BCR greater than 1.0 and an NWV ranging from 0.21 to 1.53 USD/m³. It was also found that bundling agricultural technologies with solar pump irrigation systems leads to enhanced agricultural outputs and welfare. The sustainable adoption and scale-up of these irrigation systems demand addressing technical and financial constraints, as well as input and output market challenges.
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spelling CGSpace1732372025-12-08T10:29:22Z Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia Negera, M. Dejen, Z. A. Melaku, Dagmawi Tegegne, Desalegn Adamseged, Muluken Elias Haileslassie, Amare agricultural productivity water harvesting solar powered irrigation systems pumps irrigation technology smallholders farmers farm income food security sustainable agriculture benefit-cost ratio cost benefit analysis irrigation water Irrigation plays a crucial role in enhancing food production, increasing land productivity, and improving the livelihoods of smallholder farmers in Sub-Saharan Africa (SSA). Solar pumps and water harvesting ponds have emerged as promising technologies for sustainable agriculture for smallholders in SSA and beyond. The socio-economic impacts of these systems are less studied in the existing literature. This study examined the agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on income and food security among smallholder farmers in the Central Rift Valley, Lake Hawassa, and Upper Awash sub-basin areas in Ethiopia. Data were collected from 161 farming households that were selected randomly from woredas where solar pump and water harvesting pond irrigation systems had been implemented. The sample size was determined using the power calculation method. Bio-physical observation and measurements were also conducted at field levels. The benefit–cost ratio (BCR) and net water value (NWV) from the use of solar pump and water harvesting pond irrigations were analyzed to assess the viability of these systems. The household food consumption score (HFCS) and household dietary diversity score (HDDS) were calculated to measure food security, while the revenue from crop production was used to measure crop income. An endogenous switching regression model was applied to address the endogeneity nature of the adoption of the irrigation technologies. The counterfactual analysis, specifically the Average Treatment Effect on the Treated (ATT), was used to evaluate the impacts of the irrigation technologies on income and food security. Results indicate that the ATT of crop income, HFCS, and HDDS are positive and statistically significant, illustrating the role of these irrigation systems in enhancing smallholder farmers’ welfare. Moreover, smallholder farmers’ solar pump irrigation systems were found to be economically viable for few crops, with a BCR greater than 1.0 and an NWV ranging from 0.21 to 1.53 USD/m³. It was also found that bundling agricultural technologies with solar pump irrigation systems leads to enhanced agricultural outputs and welfare. The sustainable adoption and scale-up of these irrigation systems demand addressing technical and financial constraints, as well as input and output market challenges. 2025-02 2025-02-20T03:36:38Z 2025-02-20T03:36:38Z Journal Article https://hdl.handle.net/10568/173237 en Open Access MDPI Negera, M.; Dejen, Z. A.; Melaku, Dagmawi; Tegegne, Desalegn; Adamseged, Muluken Elias; Haileslassie, Amare. 2025. Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia. Sustainability, 17(4):1486. [doi: https://doi.org/10.3390/su17041486]
spellingShingle agricultural productivity
water harvesting
solar powered irrigation systems
pumps
irrigation technology
smallholders
farmers
farm income
food security
sustainable agriculture
benefit-cost ratio
cost benefit analysis
irrigation water
Negera, M.
Dejen, Z. A.
Melaku, Dagmawi
Tegegne, Desalegn
Adamseged, Muluken Elias
Haileslassie, Amare
Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia
title Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia
title_full Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia
title_fullStr Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia
title_full_unstemmed Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia
title_short Agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers’ income and food security: evidence from Ethiopia
title_sort agricultural productivity of solar pump and water harvesting irrigation technologies and their impacts on smallholder farmers income and food security evidence from ethiopia
topic agricultural productivity
water harvesting
solar powered irrigation systems
pumps
irrigation technology
smallholders
farmers
farm income
food security
sustainable agriculture
benefit-cost ratio
cost benefit analysis
irrigation water
url https://hdl.handle.net/10568/173237
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