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Techno-economic analysis of co-combustion of Indian coals with municipal solid waste in subcritical and supercritical based steam turbine power generating carbon-negative systems

机译:基于亚临界汽轮机发电中城市固体废物的印度煤炭共燃烧的技术经济分析

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Incineration of municipal solid waste (MSW) can generate thermal energy for electricity generation and reduces its accumulation in the environment. MSW has low calorific value and its utilization would lead to low thermal efficiency in power plants due to higher auxiliary power consumption. Alternatively, this problem can be overcome by co-utilizing MSW with coal in thermal power plants. The capture of the generated CO2 from MSW can lead to carbon-negative energy production. Hence to evaluate its feasi-bility, energy and techno-economic analysis of subcritical and supercritical based steam turbines using MSW and its co-utilization with Indian high ash and low ash coals are performed using Aspen plus software (v 8.8). The effect of integrating post combustion carbon capture on the net thermal efficiency of power plants and its subsequent impact on levelized cost of electricity (LCOE) are analysed. The feedstock with an equal proportion of coal and MSW had shown a reasonable LCOE in the range of 60-67 $/MWh without carbon capture. The results had shown that the addition of 25% MSW to low ash coal could give a similar plant thermal efficiency and LCOE to that of high ash coal under subcritical conditions without carbon capture. (C) 2021 Elsevier Ltd. All rights reserved.
机译:市政固体废物(MSW)焚烧可以为发电产生热能,并降低其环境中的积累。 MSW具有低热值,其利用率由于较高的辅助功耗而导致发电厂的低热效率。或者,可以通过将MSW与热电厂中的煤共同利用MSW来克服这个问题。来自MSW的产生的CO2的捕获可能导致碳负能产生。因此,使用MSW的亚临界和超临界蒸汽涡轮机的亚临界和超临界汽轮机的能量和技术经济分析,使用Aspen Plus软件(V 8.8)进行与印度高灰和低灰分煤的共用。分析了整合后燃烧碳捕获对发电厂净热效率的影响及其随后对电力(LCoE)的水平成本的影响。具有相同比例的煤和MSW的原料在没有碳捕获的情况下,在60-67美元/毫安的范围内显示出合理的LCOE。结果表明,在亚临界条件下,添加25%的MSW至低灰煤可以使高灰煤的植物热效率和LCoE在没有碳捕获的情况下。 (c)2021 elestvier有限公司保留所有权利。

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