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Techno-economic analysis of carbon capture from a coal-fired power plant integrating solar-assisted pressure-temperature swing adsorption (PTSA)

机译:结合了太阳能辅助压力-温度摆动吸附(PTSA)的燃煤电厂碳捕集的技术经济分析

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This paper presents a techno-economic study to seek the feasibility about the proposed system that integrating solar-assisted pressure-temperature swing adsorption (PTSA) into an 800MWe coal-fired power plant. Solar energy has the potential to supply thermal energy demand for carbon capture, which can avoid the energy consumption of the traditional method such as the steam extraction. The performance of the proposed system is largely affected by the climatic conditions and solar collector's types. The assessment criteria include carbon emission intensity (CEO, levelized cost of electricity (LCOE) and cost of CO2 avoidance (COA). By the parametric analysis, the results show that CEI of the novel system with solar thermal collectors is approximately 2g/kWh lower than that of the referenced power plant with CO2 adsorption capture. In addition, CEI of the novel system can be further decrease with the decline of desorption temperature, adsorption pressure and desorption pressure. For the sake of lower LCOE and COA, the prices of the power plant capacity, adsorbents and solar collectors should be reduced. Specifically, LCOE of the system with evacuated tube collector will be lower than that of the reference system with CO2 capture as the price of solar field is lower than 46.08 USD/m2. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一项技术经济研究,以探讨将太阳能辅助的压力-温度摆动吸附(PTSA)集成到800MWe燃煤电厂中的拟议系统的可行性。太阳能有潜力满足碳捕获所需的热能需求,这可以避免传统方法(如蒸汽提取)的能耗。拟议系统的性能在很大程度上受到气候条件和太阳能收集器类型的影响。评估标准包括碳排放强度(CEO,平均电力成本(LCOE)和避免二氧化碳成本(COA))。通过参数分析,结果表明,带有太阳能集热器的新型系统的CEI降低了约2g / kWh相比于具有CO2吸附捕集功能的参考电厂,该新系统的CEI可以随着解吸温度,吸附压力和解吸压力的下降而进一步降低。发电厂的容量,吸附剂和太阳能收集器应减少。特别是,由于太阳能场的价格低于46.08美元/平方米,采用真空管收集器的系统的LCOE将低于采用二氧化碳捕集的参考系统的LCOE。 )2019 Elsevier Ltd.保留所有权利。

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