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Gas switching reforming for flexible power and hydrogen production to balance variable renewables

机译:气体开关改造可灵活发电和制氢,以平衡各种可再生能源

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Variable renewable energy (VRE) is expected to play a major role in the decarbonization of the electricity sector. However, decarbonization via VRE requires a fleet of flexible dispatchable plants with low CO2 emissions to supply clean power during times with limited wind and sunlight. These plants will need to operate at reduced capacity factors with frequent ramps in electricity output, posing techno-economic challenges. This study therefore presents an economic assessment of a new near-zero emission power plant designed for this purpose. The gas switching reforming combined cycle (GSR-CC) plant can produce electricity during times of low VRE output and hydrogen during times of high VRE output. This product flexibility allows the plant to operate continuously, even when high VRE output makes electricity production uneconomical. Although the CO2 avoidance cost of the GSR-CC plant ((sic)61/ton) was similar to the benchmark post-combustion CO2 capture plant under baseload operation, GSR-CC clearly outperformed the benchmark in a more realistic scenario where continued VRE expansion forces power plants into mid-load operation (45% capacity factor). In this scenario, GSR-CC promises a 5 %-point higher annualized investment return than the post-combustion benchmark. GSR-CC therefore appears to be a promising concept for a future scenario with high VRE market share and CO2 prices, provided that a large market for clean hydrogen is established.
机译:可变可再生能源(VRE)有望在电力行业的脱碳中发挥重要作用。但是,通过VRE进行脱碳需要有一批CO2排放量低的灵活可调度工厂,以在风和日光有限的情况下提供清洁能源。这些工厂将需要以降低的容量因子进行操作,并经常增加电力输出,这给技术经济带来了挑战。因此,本研究提出了为此目的而设计的新型近零排放发电厂的经济评估。天然气转换重整联合循环(GSR-CC)设备可以在VRE输出低时产生电能,在VRE输出高时产生氢气。这种产品的灵活性使工厂即使在高VRE输出使电力生产不经济的情况下也可以连续运行。尽管GSR-CC工厂的避免CO2成本((sic)61 /吨)与基准负荷运行下的基准燃烧后CO2捕集工厂相似,但在VRE持续扩展的更为现实的情况下,GSR-CC明显优于基准迫使电厂进入中负荷运行(容量系数为45%)。在这种情况下,GSR-CC承诺的年化投资回报率将比燃烧后基准高出5%。因此,如果建立了广阔的清洁氢市场,GSR-CC对于具有高VRE市场份额和CO2价格的未来方案来说似乎是一个有前途的概念。

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