Exploring Hydrogen and Ammonia Synthesis for Nuclear Power Peak Shaving: A Comprehensive Evaluation Model
Key Ideas
- Energy storage is crucial for peak-load regulation in clean energy systems to ensure stability and security of energy supply.
- Scholars are exploring hydrogen and ammonia synthesis as potential solutions for nuclear power peak shaving, aiming to overcome safety concerns and enhance energy storage efficiency.
- Various evaluation models have been proposed to assess energy storage technologies based on factors like technology, economy, environment, and safety.
- The integration of hydrogen production and ammonia synthesis in nuclear power peak shaving systems shows promise for future clean energy applications.
The article discusses the importance of energy storage in clean energy systems to address peak-load regulation challenges. It highlights the potential of hydrogen and ammonia synthesis for nuclear power peak shaving to enhance energy storage effectiveness. Various evaluation models are presented to assess energy storage technologies comprehensively. Scholars are focusing on the 'Electricity-Hydrogen-Ammonia' workflow architecture to design a new energy storage system. The study emphasizes the need to overcome safety concerns related to hydrogen and ammonia storage through risk analysis methods. The article showcases the research potential and development opportunities in combining hydrogen and ammonia synthesis with nuclear power for clean energy applications, particularly in the context of the Zhangyang Nuclear Power Plant in China.
Topics
Power
Clean Energy
Research
Energy Storage
Energy Systems
Nuclear Power
Risk Analysis
Ammonia Synthesis
Technology Evaluation
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