论文标题

完全可再生能力对甲烷系统的站点依赖性的级别的成本评估

Site-dependent levelized cost assessment for fully renewable Power-to-Methane systems

论文作者

Morgenthaler, Simon, Ball, Christopher, Koj, Jan, Kuckshinrichs, Wilhelm, Witthaut, Dirk

论文摘要

可再生电力产生的合成天然气能够长期存储,并为运输提供干净的燃料。在本文中,我们使用适用于欧洲两个地区的高分辨率能源系统优化模型分析了完全可再生能力对甲烷系统。最佳系统布局和操作取决于自然资源的可用性,而自然资源的可用性在地点和年份之间有所不同。我们发现,使用中间电池电动机存储系统的风能比太阳能多得多。由此产生的甲烷级别成本在0.24至0.30欧/千瓦时,经济最佳利用率在63%至78%之间。我们进一步讨论了技术发展以及使用副产品(例如氧气和减少电力)如何改善权力到甲烷系统的经济竞争力。敏感性分析表明,利率对平级成本的影响最大,其次是风和电解室堆栈的投资成本。

The generation of synthetic natural gas from renewable electricity enables long-term energy storage and provides clean fuels for transportation. In this article, we analyze fully renewable Power-to-Methane systems using a high-resolution energy system optimization model applied to two regions within Europe. The optimum system layout and operation depend on the availability of natural resources, which vary between locations and years. We find that much more wind than solar power is used, while the use of an intermediate battery electric storage system has little effects. The resulting levelized costs of methane vary between 0.24 and 0.30 Euro/kWh and the economic optimal utilization rate between 63% and 78%. We further discuss how the economic competitiveness of Power-to-Methane systems can be improved by the technical developments and by the use of co-products, such as oxygen and curtailed electricity. A sensitivity analysis reveals that the interest rate has the highest influence on levelized costs, followed by the investment costs for wind and electrolyzer stack.

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