Private Equity Investment in Renewable Energy Infrastructure: Financing, Technology Costs, Investment Risk, and Regional Determinants
DOI:
https://doi.org/10.4314/Keywords:
private equity; renewable energy; energy infrastructure; private investment; project finance; investment risk; financing conditions; development finance; renewable-energy technologies; Sub-Saharan AfricaAbstract
The study investigated private equity and private investment in renewable energy infrastructure by considering investment size, financing structure, renewable energy technologies, regional investment patterns, and key drivers of investment decisions. The analysis used a descriptive approach across 8 stages to assess global Private Participation in Infrastructure (PPI) investment and the factors influencing renewable-energy investment. Results showed that in 2023, global PPI investment increased from USD 87.1 billion through 324 projects to USD 100.7 billion through 315 projects in 2024. The energy sector was the largest PPI sector, with USD 67.9 billion in 217 projects. Debt contributed 68% of PPI financing, and equity-like sources contributed 31%, with private equity accounting for around 30.6% of total PPI investment. Renewable energy remained a major focus of energy-sector investment, although the share of renewable electricity-generation projects supported by development finance institutions dropped from 56% in 2019 to 16% in 2024. East Asia and the Pacific topped the investment regionally with USD 56.959 billion, followed by Latin America and the Caribbean at USD 21.865 billion and Sub-Saharan Africa at USD 7.918 billion. Globally, development finance institutions participated in 34 per cent of PPI projects, compared with 64 per cent in Sub-Saharan Africa, 88 per cent in the Middle East and North Africa, and 82 per cent in Europe and Central Asia. Investment attractiveness was affected by technology costs, with solar photovoltaic and onshore wind having relatively competitive levelized costs of electricity. The results indicate that investment in renewable energy is co-determined by technology costs, financing conditions, revenue certainty, policy support, capital structure and investment risk. It is therefore imperative to strengthen risk-mitigation mechanisms and financing conditions to increase private equity participation in renewable-energy infrastructure.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Quadri Salami (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- Bayode Adeyanju, Development and Application of a Novel Bi-functional Heat Treatment Furnace: A Review , Communication In Physical Sciences: Vol. 12 No. 5 (2025): VOLUME 12 ISSUE 5
- David Adetunji Ademilua, Advances and Emerging Trends in Cloud Computing: A Comprehensive Review of Technologies, Architectures, and Applications , Communication In Physical Sciences: Vol. 7 No. 4 (2021): VOLUME 7 ISSUE 4
- Faith Osaretin Osabuohien, Green Analytical Methods for Monitoring APIs and Metabolites in Nigerian Wastewater: A Pilot Environmental Risk Study , Communication In Physical Sciences: Vol. 4 No. 2 (2019): VOLUME 4 ISSUE 2
- Abubakar Tahiru, Oluwasanmi M. Odeniran, Shardrack Amoako, Developing Artificial Intelligence-Powered Circular Bioeconomy Models That Transform Forestry Residues into High-Value Materials and Renewable Energy Solutions , Communication In Physical Sciences: Vol. 8 No. 4 (2022): VOLUME 8 ISSUE 4
- Musa M. Mbusube, Dahiru D. Muhammed, Saidu Abdullahi, Abdulaziz Bello, Hydraulic Modelling and Compression Design for High-Pressure Natural Gas Transmission: A Case Study of the Calabar–Ajaokuta Gas Pipeline System , Communication In Physical Sciences: Vol. 13 No. 2 (2026): VOLUME 13 ISSUE 2
- Oyebola Olusola Olurotimi, Belewu Fatai Damilola, Balogun Rilwan Oluwanishola,, Adegboyega Anthony Babajide, Oyebode Daniel Oluwatimilehin, Exploring the Thermoelectric Potential of Trigonal MgS2: A Computational Investigation Using DFT and Boltzmann Transport Theory , Communication In Physical Sciences: Vol. 11 No. 2 (2024): VOLUME 11 ISSUE 2
- Mu’awiya Baba Aminu, Hareyani Zabidi, Juliet Ngozi Chijioke-Churuba, Saleh Mamman Abdullahi, Kolapo Fasina, Aliyu Abubakar, Muhammad Nurudeen Mashin, Abdulmalik Nana Fatima, Bertha Onyenachi Akagbue, Olusola Kolawole Ogunmilua, Environmental and Public Health Challenges of Phases Towards Cement Production, Remediation Monitoring and Evaluation Strategies , Communication In Physical Sciences: Vol. 12 No. 1 (2024): VOLUME 12 ISSUE 1
- Osondu Onwuegbuchi, Abdulaziz Olaleye Ibiyeye, Joy Nnenna Okolo, Samuel Adetayo Adeniji, Cybersecurity Risks in the Fintech Ecosystem: Regulatory and Technological Perspectives , Communication In Physical Sciences: Vol. 9 No. 4 (2023): VOLUME 9 ISSUE 4
- Gabriel Chukwuka Chuks Ndinwa, Perception, Level of Awareness And Involvement Of Students From Tertiary Institutions In Environmental Sanitation , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
- Nsikan Ime Obot, Okwisilieze Uwadoka, Oluwasegun Israel Ayayi, Modelling Nonseasonal Daily Clearness Index for Solar Energy Estimation in Ilorin, Nigeria Using Support Vector Regression , Communication In Physical Sciences: Vol. 11 No. 2 (2024): VOLUME 11 ISSUE 2
You may also start an advanced similarity search for this article.



