A COMPREHENSIVE REVIEW ON THE INTEGRATION OF GEOTHERMAL-SOLAR HYBRID ENERGY SYSTEMS FOR HYDROGEN PRODUCTION
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| Format: | Recurso digital |
| Sprache: | Englisch |
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2024
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| _version_ | 1866902010164412416 |
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| author | ISMAIL AKANMU ADEBAYO |
| author_facet | ISMAIL AKANMU ADEBAYO |
| contents | <p><strong><span lang="EN-US">Abstract</span></strong></p> <p><span lang="EN-US">An integrated system, harnessing solar and geothermal resources, is presented and evaluated. This review aims to produce H<sub>2</sub>, from solar-geothermal resources. This integrated renewable energy system comprises solar PV/T modules as well as geothermal energy for H<sub>2</sub> synthesis. A review was carried out to examine the impact of different system design parameters on the energy and exergy efficiencies of both the overall system and its subsystems. Geothermal-solar hybrid systems for H<sub>2</sub> production integrate geothermal energy and solar power to create a sustainable and efficient method for hydrogen generation. These systems capitalize on the continuous and stable heat supply from geothermal sources combined with the intermittent yet potent energy from solar radiation. By leveraging the strengths of both energy sources, the hybrid system can achieve higher efficiency and reliability in hydrogen production. Geothermal energy provides a consistent base load, reducing the dependency on solar energy's variability, while solar power can be used during peak sunlight hours to boost production. This synergy not only enhances the overall energy output but also reduces GHG emissions, making it an environmentally friendly solution for meeting the growing demand for clean H<sub>2</sub>.</span></p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_16901970 |
| institution | Zenodo |
| language | eng |
| publishDate | 2024 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | A COMPREHENSIVE REVIEW ON THE INTEGRATION OF GEOTHERMAL-SOLAR HYBRID ENERGY SYSTEMS FOR HYDROGEN PRODUCTION ISMAIL AKANMU ADEBAYO Geothermal Energy; Energy Efficiency, Exergy Efficiency; Hydrogen; Thermodynamic Analysis. <p><strong><span lang="EN-US">Abstract</span></strong></p> <p><span lang="EN-US">An integrated system, harnessing solar and geothermal resources, is presented and evaluated. This review aims to produce H<sub>2</sub>, from solar-geothermal resources. This integrated renewable energy system comprises solar PV/T modules as well as geothermal energy for H<sub>2</sub> synthesis. A review was carried out to examine the impact of different system design parameters on the energy and exergy efficiencies of both the overall system and its subsystems. Geothermal-solar hybrid systems for H<sub>2</sub> production integrate geothermal energy and solar power to create a sustainable and efficient method for hydrogen generation. These systems capitalize on the continuous and stable heat supply from geothermal sources combined with the intermittent yet potent energy from solar radiation. By leveraging the strengths of both energy sources, the hybrid system can achieve higher efficiency and reliability in hydrogen production. Geothermal energy provides a consistent base load, reducing the dependency on solar energy's variability, while solar power can be used during peak sunlight hours to boost production. This synergy not only enhances the overall energy output but also reduces GHG emissions, making it an environmentally friendly solution for meeting the growing demand for clean H<sub>2</sub>.</span></p> |
| title | A COMPREHENSIVE REVIEW ON THE INTEGRATION OF GEOTHERMAL-SOLAR HYBRID ENERGY SYSTEMS FOR HYDROGEN PRODUCTION |
| topic | Geothermal Energy; Energy Efficiency, Exergy Efficiency; Hydrogen; Thermodynamic Analysis. |
| url | https://doi.org/10.5281/zenodo.16901970 |