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Integrating geothermal into coal-fired power plant with carbon capture: A comparative study with solar energy

机译:通过碳捕集将地热整合到燃煤电厂中:与太阳能的比较研究

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A new system integrating geothermal energy into post-combustion carbon capture is proposed in this paper. Geothermal energy at medium temperatures is used to provide the required thermal heat for solvent regeneration. The performance of this system is compared with solar assisted carbon capture plant via technical and economic evaluation. A 300 MWe coal-fired power plant is selected as the reference case, and two different locations based on the local climatic conditions and geothermal resources are chosen for the comparison. The results show that the geothermal assisted post-combustion carbon capture plant has better performances than the solar assisted one in term of the net power output and annual electricity generation. The net plant average efficiency based on lower heating value can be increased by 2.75% with a thermal load fraction of about 41%. Results of economic assessment show that the proposed geothermal assisted post-combustion carbon capture system has lower levelized costs of electricity and cost of carbon dioxide avoidance compared to the solar assisted post-combustion carbon capture plant. In order to achieve comparative advantages over the reference post-combustion carbon capture plant in both locations, the price of solar collector has to be lower than 70 USD/m(2), and the drilling depth of the geothermal well shall be less than 2.1 km. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种将地热能集成到燃烧后碳捕获中的新系统。中等温度下的地热能用于提供溶剂再生所需的热能。通过技术和经济评估,将该系统的性能与太阳能辅助碳捕集设备进行了比较。选择一个300 MWe的燃煤电厂作为参考案例,并根据当地气候条件和地热资源选择两个不同的位置进行比较。结果表明,就净发电量和年发电量而言,地热辅助燃烧后碳捕集装置的性能要优于太阳能辅助燃烧装置。基于较低的发热量,工厂的净平均效率可以提高2.75%,而热负荷比例约为41%。经济评估结果表明,与太阳能辅助燃烧后碳捕集装置相比,拟议的地热辅助燃烧后碳捕集系统具有较低的电力成本和避免二氧化碳的成本。为了在两个地点均获得比参考燃烧后碳捕集装置更大的比较优势,太阳能集热器的价格必须低于70美元/平方米(2),地热井的钻探深度应小于2.1公里(C)2017 Elsevier Ltd.保留所有权利。

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