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Integration of the steam cycle and CO2 capture process in a decarbonization power plant

机译:脱碳电厂中蒸汽循环和CO2捕集工艺的集成

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摘要

A new integrated system with power generation and CO2 capture to achieve higher techno-economic performance is proposed in this study. In the new system, three measures are adopted to recover the surplus energy from the CO2 capture process. The three measures are as follows: (1) using a portion of low-pressure steam instead of high-pressure extracted steam by installing the steam ejector, (2) mixing a portion of flash-off water with the extracted steam to utilize the superheat degree of the extracted steam, and (3) recycling the low-temperature waste heat from the CO2 capture process to heat the condensed water. As a result, the power output of the new integrated system is 107.61 MW higher than that of a decarbonization power plant without integration. The efficiency penalty of CO2 capture is expected to decrease by 4.91%-points. The increase in investment produced by the new system is 3.25 M$, which is only 0.88% more than the total investment of a decarbonization power plant without integration. Lastly, the cost of electricity and CO2 avoided is 15.14% and 33.1% lower than that of a decarbonization power generation without integration, respectively. The promising results obtained in this study provide a new approach for large-scale CO2 removal with low energy penalty and economic cost. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一种具有发电和二氧化碳捕集的新型集成系统,以实现更高的技术经济绩效。在新系统中,采用了三项措施来回收二氧化碳捕集过程中的剩余能量。这三个措施如下:(1)通过安装蒸汽喷射器,使用一部分低压蒸汽代替高压提取蒸汽,(2)将一部分闪蒸水与提取蒸汽混合以利用过热提取蒸汽的温度;(3)回收来自CO2捕集过程的低温废热,以加热冷凝水。结果,新的集成系统的功率输出比没有集成的脱碳电厂的功率输出高107.61 MW。二氧化碳捕集的效率损失预计将降低4.91%。新系统产生的投资增加额为325万美元,仅比不集成脱碳电厂的总投资额多0.88%。最后,与没有整合的脱碳发电相比,避免的电费和二氧化碳成本分别降低了15.14%和33.1%。在这项研究中获得的有希望的结果提供了一种新的大规模脱除二氧化碳的方法,具有低能耗和经济成本的优点。 (C)2014 Elsevier Ltd.保留所有权利。

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