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May 10, 2026Next Sustainability1 citationsOpen Access

Techno-economic assessment of a hydrogen-based microgrid for sustainable water pumping

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AOAyodeji Akinsoji OkubanjoUniversity of NigeriaIOIgnatius Kema OkakwuUniversity of NigeriaENEtinosa Noma‐OsaghaeUniversity of Nigeria

Key Points

  • The research aims to assess the feasibility of hydrogen-based microgrids for sustainable water pumping in rural areas.
  • Techno-economic examination of nine microgrid configurations including PV, WT, FC, EL, and hydrogen storage.
  • Evaluation of annual electricity and hydrogen production, cost metrics, and unmet energy demand.
  • Analysis of configurations' economic competitiveness and environmental sustainability.
  • PV/EL/FC/H2 configuration generates approximately 1.19 GWh of electricity yearly with a 100% renewable fraction.
  • Annual generation of 5517 kg of hydrogen at a levelized cost of 6.33 $/kg, with a cost of energy at 0.180 $/kWh.
  • Total net present cost of the system is $451,731, indicating favorable economic viability.

Abstract

This study presents the potential feasibility of deploying hybrid microgrids for off-grid water supply in rural and agro-processing applications in Nigeria. Nine microgrid configurations which combine photovoltaic (PV) panels, wind turbines (WT), fuel cells (FC), electrolyzers (EL), hydrogen (H 2) storage, battery storage (BAT), diesel generators (GEN), and power converters (CONV) were techno-economically examined. Among these configurations, the PV/EL/FC/H 2 system (S2) emerged as a promising option for combined electricity and hydrogen production, generating approximately 1. 19 GWh of electricity yearly, with annual unmet load of 75 kWh and capacity shortages of 152–192 kWh/year. Also, the system simultaneously generates 5517 kg of hydrogen annually at a Levelized Cost of Hydrogen (LCOH) of 6. 33 /kg, achieves a Cost of energy (COE) of 0. 180 /kWh with 100% renewable fraction, and maintains a Net Present Cost (NPC) of 451, 731. This configuration demonstrates technical feasibility, economic competitiveness, and environmental sustainability. These results show the potential for utilizing hydrogen-based microgrids in off-grid applications, and support policy formulation, green financing, and large-scale rural energy deployment in Sub-Saharan Africa.

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Cite This Study

Okubanjo et al. (2026) studied this question.

synapsesocial.com/papers/6a002162c8f74e3340f9c468https://doi.org/10.1016/j.nxsust.2026.100337
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