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首页> 外文期刊>International Journal of Greenhouse Gas Control >Evaluation of natural gas combined cycle power plant for post-combustion CO2 capture integration
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Evaluation of natural gas combined cycle power plant for post-combustion CO2 capture integration

机译:天然气联合循环电厂燃烧后CO2捕集整合的评估

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Over the coming decade, gas-fired power plants are projected to account for a substantial share of global output. CO2 capture would be required to mitigate the associated emissions. Thus, high fidelity models of a 440 MW natural gas combined cycle power plant, a CO2 capture plant and a CO2 compression train were built and integrated for 90% capture level. Power output is observed to fall by 15%, while cooling water demand increases by 33%. A 40% exhaust gas recirculation (EGR) causes a 10 MW power recovery, but increases cooling water demand further. It is shown that higher exhaust gas CO2 concentration enhances mass transfer in the capture plant, which reduces its steam requirement. Supplementary firing (SF) of the exhaust gas is observed to generally improve the plant output. Economic analysis, performed via a bottom-up approach, reveals integrated plant overnight cost to be 58% higher than the power plant cost, discouraging deployment of CO2 capture. The impact of EGR is marginal, while SF implementation almost doubles the overnight cost. Cost of electricity increases by 30% for the integrated plant, but only by 26% with EGR, and 24% with SF. However, the price of gas remains the largest contributor to cost of electricity
机译:在未来十年中,燃气发电厂预计将占全球总产量的很大一部分。需要二氧化碳捕获以减轻相关的排放。因此,建立并整合了440兆瓦天然气联合循环发电厂,CO2捕集电厂和CO2压缩机组的高保真度模型,并实现了90%的捕集水平。观察到功率输出下降了15%,而冷却水需求却增长了33%。 40%的废气再循环(EGR)导致10 MW的功率回收,但进一步增加了冷却水需求。结果表明,较高的废气CO2浓度可增强捕集装置中的传质,从而降低其蒸汽需求。观察到废气的补充燃烧(SF)通常可以提高工厂的产量。通过自下而上的方法进行的经济分析表明,电厂的通宵综合成本比电厂的成本高58%,从而阻碍了二氧化碳捕集的部署。 EGR的影响很小,而SF实施几乎使过夜成本增加了一倍。综合工厂的电力成本增加了30%,而EGR仅增加了26%,SF则增加了24%。然而,天然气价格仍然是电力成本的最大贡献者

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