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Exergy-based analyses of an advanced zero emission plant

机译:基于火用的先进零排放工厂分析

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CO_2 capture and storage from energy conversion systems is widely known as a potential method to reduce CO_2 emissions to the atmosphere and to limit the impact of energy use on the climate. This study uses the exergoeconomic and exergoenvironmental analyses to provide an evaluation from an economic and environmental perspective, respectively, of an advanced zero emission plant (AZEP) and to reveal possible ways to improve the overall effectiveness of the plant. The AZEP, which is an oxy-fuel power plant, is evaluated and compared with a reference plant without CO_2 capture. The exergoeconomic analysis shows a high increase in cost for the AZEP, due to the introduction of the membrane technology, while on the other hand, its environmental impact is significantly reduced. When compared with competitive alternatives, like chemical absorption-a post-combustion technology for CO_2 capture-the oxy-fuel plant achieves lower relative cost and exergy expenditures.
机译:从能量转换系统捕获和存储CO_2被广泛认为是减少向大气中排放CO_2并限制能源使用对气候的影响的一种潜在方法。这项研究使用了能效经济和能效环境分析,分别从经济和环境角度对先进的零排放工厂(AZEP)进行了评估,并揭示了提高工厂总体效率的可能方法。对AZEP(一种含氧燃料的发电厂)进行了评估,并与未捕获CO_2的参比发电厂进行了比较。人体经济分析表明,由于引入了膜技术,AZEP的成本大大增加,而另一方面,其对环境的影响已大大降低。与竞争性替代产品(如化学吸收)(一种用于CO_2捕集的燃烧后技术)相比,该含氧燃料工厂的相对成本和火用支出更低。

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