Techno-economic analysis on oxy-fuel based steam turbine power system using municipal solid waste and coals with ultrasonicator sulfur removal

Pradeep Sahu, V. Prabu
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引用次数: 2

Abstract

Municipal solid waste (MSW) is a carbon–neutral energy source and possesses a moderate heating value; hence, it can be used as an alternative fuel for coal. To use high ash and high sulfur Indian coals efficiently, a techno economic analysis is performed for electricity generation using supercritical and subcritical based steam turbines operating in the oxy-fuel co-combustion mode of MSW with Indian coals. The impact of the capture of direct and indirect greenhouse gasses such as CO2, NOx and SOx on the net thermal efficiency of the power plants is assessed. The supercritical based steam turbine achieved a higher net thermal efficiency by 8.8% using MSW based feedstock compared to sub-critical conditions. The co-combustion mode reduced the levelized cost of electricity (LCOE) by 48–73 $/MWh. Techno-economic analysis for sulfur removal in coal using ultrasonication technology has not yet been reported in the literature. The incorporation of an ultrasonicator (a pre-combustion sulfur remover) and a duct sorbent injector (a post-combustion SOx absorber) increased the LCOE by 1.39–2.75 $/MWh. In high sulfur coals, the SOx emissions decreased from 224.79 mg/m3 to 9.2 mg/m3.

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城市生活垃圾与煤超声脱硫全氧汽轮机动力系统的技术经济分析
城市生活垃圾是一种碳中性能源,具有中等热值;因此,它可以作为煤的替代燃料。为有效利用高灰分、高硫印度煤,对城市生活垃圾与印度煤在全氧共燃模式下运行的超临界和亚临界汽轮机发电进行了技术经济分析。评估了捕获二氧化碳、氮氧化物和硫氧化物等直接和间接温室气体对发电厂净热效率的影响。与亚临界条件下相比,超临界条件下的汽轮机使用基于MSW的原料实现了8.8%的高净热效率。共燃模式将平准化电力成本(LCOE)降低了48-73美元/兆瓦时。超声脱除煤中硫的技术经济分析尚未见文献报道。超声分离器(燃烧前除硫剂)和导管吸附剂注入器(燃烧后SOx吸收剂)的组合使LCOE提高了1.39-2.75美元/兆瓦时。高硫煤的硫氧化物排放量由224.79 mg/m3降至9.2 mg/m3。
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