The International Journal of Energy Horizon (IJEH) is a platform focused on advancing scholarly research and fostering informed energy discussion. The main goal is to make a significant contribution to the global discourse on energy by publishing high-quality, original research articles, reviews, and perspectives that explore emerging trends, address critical challenges, and propose innovative solutions across all facets of energy science, technology, policy, and sustainability. Ultimately, we aim to inspire and motivate our readers in these endeavors.
Core Areas of Focus:
1. Renewable Energy Technologies:
- Solar, wind, hydroelectric, geothermal, biomass, hydrogen, and fuel cell technologies
- Integration of renewable energy sources into existing grids
- Technological advancements and innovations in renewable energy generation and storage
2. Energy Storage and Distribution:
- Energy storage technologies (e.g., batteries, hydrogen storage, pumped hydro, thermal storage)
- Smart grid technologies and energy distribution systems
- Energy efficiency improvements in distribution networks
3. Hydrogen Technology:
- Hydrogen production methods (electrolysis, steam methane reforming, biomass gasification)
- Hydrogen storage and transportation technologies
- Applications of hydrogen in energy systems (fuel cells, hydrogen as a feedstock)
4. Battery Technology:
- Advanced battery chemistries (e.g., lithium-ion, solid-state batteries, flow batteries)
- Battery management systems and optimization strategies
- Applications of batteries in energy storage, electric vehicles, and grid integration
5. Energy Economics and Policy:
- Economic analysis of energy markets and pricing mechanisms
- Policy frameworks and regulatory mechanisms influencing energy transitions
- Economic impacts of renewable energy adoption and energy efficiency measures
6. Sustainability and Environmental Impacts:
- Environmental assessment and mitigation strategies related to energy production and consumption
- Life cycle assessment of energy technologies
- Climate change mitigation through sustainable energy practices
7. Energy Efficiency and Demand-side Management:
- Energy-efficient technologies and practices in buildings, transportation, and industry
- Demand-side management strategies and behavioral aspects influencing energy consumption
8. Emerging Technologies and Innovations:
- Emerging energy technologies (e.g., smart cities, Internet of Things applications in energy)
- Technological innovations driving energy sector transformations
9. Materials for Energy Applications:
- Material synthesis methods for energy applications (e.g., top-down, bottom-up, vacuum or non-vacuum)
- Material characterizations for energy applications (e.g., physical, chemical, electrochemical)
- Material performance analyses for energy applications (e.g., efficiency, stability)
10. Thermodynamics:
- Thermodynamic Systems Modeling and Simulation
- Energy and Exergy Analysis of Systems
- Thermo-economics
- Combustion
- Aerodynamics
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