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Performance evaluation and carbon assessment of IGCC power plant with coal quality

机译:IGCC电厂煤质性能评估和碳评估

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Techno-economic and environmental impacts of coal type were evaluated using a 500 MW-class integrated coal gasification combined cycle(IGCC), including reheat combined cycle process with three-pressure level based on higher than 99.9% sulfur removal and 90% carbon capture. Efficiency and cost of electricity(COE) of four different coals in the IGCC power plant were compared: two bituminous and two sub-bituminous coals. As coal with higher heating value per unit weight was fed into a gasifier, higher cold gas efficiency of the gasifier and greater net overall plant efficiency was achieved. The highest overall plant efficiency of 31.62% could be achieved by using bituminous. Raw water consumption was also affected by the moisture content of the as-received coal. The as-received coal with the highest moisture content consumed the least amount of water. The exergy flow and destruction were presented in Grassmann diagrams to provide more detailed information on main units. However, according to the sensitivity test, the COE was mainly influenced by fuel prices and costs of CO2 transport and storage. If the price difference between bituminous coals and sub-bituminous coals is reduced, the utilization of bituminous coals becomes more competitive in terms of COE and capital cost. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用500兆瓦级集成煤气化联合循环(IGCC)评估了煤炭类型对技术经济和环境的影响,包括基于99.9%以上的硫去除率和90%的碳捕获量的三压力水平再热联合循环过程。比较了IGCC电厂中四种不同煤的效率和电力成本(COE):两种烟煤和两种亚烟煤。将单位重量热值较高的煤送入气化炉后,气化炉的冷气效率更高,整个工厂的净效率更高。使用沥青可达到31.62%的最高总工厂效率。原水消耗量还受原煤的水分含量影响。水分含量最高的原煤消耗的水量最少。火用流和破坏以格拉斯曼图表示,以提供有关主要单元的更多详细信息。但是,根据敏感性测试,COE主要受燃料价格以及CO2运输和存储成本的影响。如果减少烟煤与次烟煤之间的价格差异,则烟煤的利用就COE和资本成本而言更具竞争力。 (C)2019 Elsevier Ltd.保留所有权利。

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