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Moi University Dynamic Renewable Energy Innovation Park – Solar Phases I–III and MUREPHAR

Moi University Dynamic Renewable Energy Innovation Park – Solar Phases I–III and MUREPHAR

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Project organizer

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Kebenei Cromwell
Country: Kenya
Project coverage by countries:
Germany, Kenya
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Implementation period: Indefinitely
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Head of the project

Eng. Cromwell Kebenei
Project Initiator &International Project Coordinator
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+49 1769 9002040

Description

The Moi University Dynamic Renewable Energy Innovation Park and Green Hydrogen, Ammonia and Fertilizer Research Hub (MUREPHAR) is a multi-phase renewable-energy, education and research initiative at Moi University in Kenya. It connects clean-energy infrastructure with practical education, applied research, international cooperation, capacity building and sustainable institutional development.

The initiative has progressed step by step. Phase I established approximately 30 kWp of solar-PV capacity and demonstrated the feasibility and value of renewable energy within the university environment. Its successful implementation also attracted interest from neighbouring institutions and schools that visited the project and explored similar solutions.

Building on this foundation, Phase II added approximately 51.7 kWp of grid-connected solar-PV capacity. Phases I and II therefore represent approximately 81.7 kWp of cumulative installed capacity at Moi University. Approximately KES 8 million in resources were mobilised across these phases, as recorded in Moi University's institutional recognition documentation.

The demonstrated success created a multiplier effect beyond the university. Further resource mobilisation contributed to completed projects including a 27.4 kWp installation for the Catholic Diocese, 11.6 kWp at St. Mary's Academy, a 2.8 kWp solar-pumping project, and efficient cooking solutions for two schools.

Phase III is the next development stage. Planned from September 2026 to June 2027, it will add approximately 84 kWp of solar-PV capacity. Upon completion, cumulative capacity from Phases I–III is expected to reach approximately 165.7 kWp.

The project is more than an electricity-generation initiative. It is intended to strengthen Moi University as a living laboratory where students, researchers, engineers and partners can engage with renewable energy through practical learning, monitoring, research, demonstration and innovation.

My role includes international partnership development, resource mobilisation, stakeholder engagement, and technical and project coordination between partners in Kenya and Germany.

Beyond Phase III, MUREPHAR provides a foundation for Moi University's wider long-term ambition of developing a renewable-energy ecosystem of up to 30 MW, together with future research opportunities in green hydrogen, ammonia and sustainable fertilizer technologies. The 30 MW ambition is a long-term vision and is not presented as already installed or funded.

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Project goals

The overall goal is to develop a scalable renewable-energy, education and research ecosystem at Moi University that combines clean electricity generation with practical learning, research, innovation, international cooperation and measurable environmental impact.

The immediate objective of Phase III is to expand the approximately 81.7 kWp solar-PV capacity established through Phases I and II by approximately 84 kWp. Following successful completion, cumulative installed capacity across the three phases is expected to reach approximately 165.7 kWp.

The project pursues five interconnected goals:

  1. Renewable energy and climate impact – increase renewable electricity generation, reduce dependence on conventional electricity and contribute to lower greenhouse-gas emissions.
  2. Education and capacity building – provide students, researchers, engineers and technical personnel with practical exposure to renewable-energy systems, monitoring and sustainable engineering.
  3. Research and innovation – develop the renewable-energy infrastructure as a living laboratory and strengthen the foundation for future research in solar energy, green hydrogen, ammonia and sustainable fertilizer technologies.
  4. International cooperation – strengthen collaboration between Moi University and institutions, professionals, donors and technical partners in Kenya, Germany and internationally, enabling knowledge transfer, resource mobilisation and joint project development.
  5. Replication and scalability – demonstrate that successful university-based renewable-energy projects can stimulate similar solutions at schools, community institutions and other organisations.

The long-term objective is to use the experience, infrastructure, partnerships and evidence generated through these phases as building blocks toward MUREPHAR and Moi University's wider renewable-energy ambition of up to 30 MW.

The project therefore seeks not merely to install solar panels, but to create an enduring platform through which renewable energy generates educational, environmental, institutional, technological and social value.

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Results of the project

This is particularly important. Paste:

The initiative has already produced measurable results, while Phase III represents the next planned expansion.

COMPLETED RESULTS

• Phase I established approximately 30 kWp of solar-PV capacity at Moi University.

• Phase II added approximately 51.7 kWp of grid-connected solar-PV capacity.

• Phases I and II therefore provide approximately 81.7 kWp of cumulative installed capacity.

• Approximately KES 8 million in resources were mobilised across the first two phases, as documented in Moi University's institutional recognition.

• The project has created operational renewable-energy infrastructure that also supports practical learning, technical demonstration, institutional capacity and research opportunities.

• Cooperation between Moi University and partners in Kenya and Germany has been strengthened through resource mobilisation, technical engagement, knowledge exchange and project implementation.

REPLICATION AND MULTIPLIER EFFECT

Following Phase I, representatives from neighbouring institutions and schools visited the project and expressed interest in similar solutions. This interest contributed to further resource mobilisation and replication.

Additional completed projects include:

• Catholic Diocese – 27.4 kWp solar installation.
• St. Mary's Academy – 11.6 kWp solar installation.
• Solar pumping project – 2.8 kWp.
• High-efficiency cooking solutions – two schools.

The three additional solar projects represent approximately 41.8 kWp of replicated solar capacity, with estimated annual CO₂ savings of approximately 31.3 tonnes.

PHASE III EXPECTED RESULTS

• Approximately 84 kWp of additional solar-PV capacity.
• Approximately 165.7 kWp cumulative capacity across Phases I–III after successful completion.
• Increased renewable electricity generation and energy resilience.
• Expanded practical learning and research opportunities.
• Strengthened renewable-energy monitoring and demonstration.
• A stronger technical and institutional foundation for MUREPHAR.
• Further development of international partnerships and knowledge transfer.

LONG-TERM DEVELOPMENT

The completed and planned phases establish a step-by-step pathway toward Moi University's wider renewable-energy and research vision. The proposed development of up to 30 MW remains a long-term strategic ambition rather than a completed result.

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