Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Solar E-Cooking with Low-Power Solar Home Systems for Sub-Saharan Africa

Domain:

environment and energy
Creator:
FerRuben UrracaCamJul
Publisher:
MDP
Host:
The e-cooking feasibility was evaluated for two of the main staple foods across rural Sub-Saharan Africa (rice and maize porridge) considering basic solar home systems (SHS) of 100–150 W and using inexpensive market available low-power DC cooking devices (rice cooker and slow cooker). The coverage of e-cooking necessities was spatially evaluated for the African continent considering households of two, five, and eight people. While households of two people were able to be covered >95% of the days, the increase in e-cooking necessities implied that only larger PV generators (150 W) located in high irradiation sites (>2400 kWh/m2/year) were able to fulfill e-cooking, even in scenarios of households of five and eight people. Furthermore, the economic cost and the greenhouse gases emission factor (GHG) of e-cooking via small SHS were evaluated and benchmarked against traditional technologies with wood and charcoal considering three-stone and improved stoves and liquefied petroleum gas (LPG) cookers. The GHG for e-cooking was 0.027–0.052 kgCO2eq./kg·meal, which was strikingly lower than the other technologies (0.502–2.42 kgCO2eq./kg·meal). The e-cooking cost was in the range of EUR 0.022–0.078 person/day, which was clearly lower than LPG and within the range of the cost of cooking with wood and charcoal (EUR 0.02–0.48 person/day). The results provided a novel insight regarding market available technologies with a potential of changing cooking conditions in this region.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0/

Similar

Environmental Impact of Solar Home Systems in Sub-Saharan AfricaUnderstanding long-term energy use in off-grid solar home systems in sub-Saharan AfricaData repository for 'Understanding long-term energy use in off-grid solar home systems in sub-Saharan Africa'Techno-Economic Analysis of Solar e-Cooking Systems for Rural Communities in NigeriaSolar Home Systems in Rural Landscapes: Examining the Forces Shaping Solar Home Systems Adoption in Southeast NigeriaEstimating Solar Irradiance for Improved Solar Energy Planning in Sub-Saharan Africa through AI

Environmental Impact of Solar Home Systems in Sub-Saharan Africa

Solar home systems (SHS) represent one of the most promising technologies for a rapid and independen

Understanding long-term energy use in off-grid solar home systems in sub-Saharan Africa

Solar home systems provide low-cost electricity access for rural off-grid communities. As access to

Data repository for 'Understanding long-term energy use in off-grid solar home systems in sub-Saharan Africa'

This dataset contains hourly load demand time-series from 1,000 off-grid solar home systems deployed

Techno-Economic Analysis of Solar e-Cooking Systems for Rural Communities in Nigeria

This paper presents solar PV electric cooking systems to fill the gap of clean energy stove demand i

Solar Home Systems in Rural Landscapes: Examining the Forces Shaping Solar Home Systems Adoption in Southeast Nigeria

Estimating Solar Irradiance for Improved Solar Energy Planning in Sub-Saharan Africa through AI

The project successfully developed a machine learning model to predict daily Global Horizontal Irrad