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首页> 外文期刊>Computers & Chemical Engineering >A multi-objective analysis for the retrofit of a pulverized coal power plant with a CO_2 capture and compression process
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A multi-objective analysis for the retrofit of a pulverized coal power plant with a CO_2 capture and compression process

机译:利用CO_2捕集和压缩工艺改造粉煤发电厂的多目标分析

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摘要

The long term sustainability of fossil energy systems depends on reducing their carbon footprint and freshwater consumption. Much of the United States is or will be experiencing water shortages in the near future. Since power generation accounts for about a third of all freshwater use, reducing freshwater requirements will be of increasing importance. In addition, recent reports indicate that adding a carbon capture system may double water consumption. Thus, when designing a carbon capture and compression system, it is important to consider not only the direct costs, but also the increased environmental burden associated with increased freshwater requirements. To address these interrelated sustainability issues, a modular framework for multi-objective analysis was developed and demonstrated by minimizing freshwater consumption and levelized cost of electricity for the retrofit of a hypothetical 550 MW subcritical pulverized coal power plant with an MEA-based carbon capture and compression system. Published by Elsevier Ltd.
机译:化石能源系统的长期可持续性取决于减少其碳足迹和淡水消耗。在不久的将来,美国大部分地区都将出现水短缺。由于发电约占所有淡水使用量的三分之一,因此减少淡水需求将变得越来越重要。此外,最近的报告表明,添加碳捕集系统可能会使水消耗增加一倍。因此,在设计碳捕获和压缩系统时,不仅要考虑直接成本,而且还要考虑与增加的淡水需求相关的环境负担,这一点很重要。为了解决这些相互关联的可持续性问题,开发并展示了一种用于多目标分析的模块化框架,该框架通过将淡水消耗量和电费平均水平降至最低来改造假设的550 MW亚临界粉煤电厂,并采用基于MEA的碳捕集和压缩技术系统。由Elsevier Ltd.发布

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