论文标题
绿色氢气的最佳供应链和电力部门的好处
Optimal supply chains and power sector benefits of green hydrogen
论文作者
论文摘要
绿色氢可以帮助使运输部门的一部分脱碳,但其功率部门相互作用尚不清楚。如果生产足够灵活,它可能有助于整合可变的可再生能源。使用电力部门的开源合作模型,以及在德国填充站提供氢的四个选项,我们发现能源效率和时间灵活性之间的权衡:对于可再生能源和氢的较低份额,较低的能源效率和较低的柔性小型小规模的小型现场电解是最佳的。对于更高的可再生能源和/或氢的份额,更灵活但节能较低的大规模氢供应链具有重要性,因为它们允许通过存储将氢产生的需求脱离需求。液体氢的出现特别有益,然后是液体有机氢载体和气态氢。大规模的氢供应链可以通过减少可再生盈余产生来带来可观的电源部门收益。在评估绿色氢在未来的能源过渡方案中的作用时,能源建模者和系统规划人员应更详细地考虑氢供应链的独特柔韧性特征。
Green hydrogen can help to decarbonize parts of the transportation sector, but its power sector interactions are not well understood. It may contribute to integrating variable renewable energy sources if production is sufficiently flexible in time. Using an open-source co-optimization model of the power sector and four options for supplying hydrogen at German filling stations, we find a trade-off between energy efficiency and temporal flexibility: for lower shares of renewables and hydrogen, more energy-efficient and less flexible small-scale on-site electrolysis is optimal. For higher shares of renewables and/or hydrogen, more flexible but less energy-efficient large-scale hydrogen supply chains gain importance as they allow disentangling hydrogen production from demand via storage. Liquid hydrogen emerges as particularly beneficial, followed by liquid organic hydrogen carriers and gaseous hydrogen. Large-scale hydrogen supply chains can deliver substantial power sector benefits, mainly through reduced renewable surplus generation. Energy modelers and system planners should consider the distinct flexibility characteristics of hydrogen supply chains in more detail when assessing the role of green hydrogen in future energy transition scenarios.