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Energetic Evaluation of Different Flow Sheet Modifications of Post-Combustion CO2 Capture Plant at Coal and Natural Gas Fired Power Plant for a Generic Improved Solvent

机译:燃烧后CO2捕获厂的不同流量表改性的精力充沛评价煤与天然气燃烧发电厂通用改进的溶剂

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The post-combustion capture (PCC) technology is a promising possibility to reduce CO2 emissions of fossil fuel fired power plants. One of the main concerns for the PCC is the loss in electric power output. A reduction in efficiency penalty for solvent based PCC can be achieved by improving the solvent properties as well as by improving the process design. There are many different process flow sheet modifications with an improvement in process design reported in literature. In this work two of these modifications for a capture plant are evaluated. To be able to compare these process modifications it is necessary to evaluate them on identical solvent and process conditions. The modified processes are compared to base cases processing the flue gas from a supercritical pulverised coal fired power plant as well as a natural gas combined cycle power plant. The solvent used in the capture plant is a generic improved solvent, representing possible future solvents. The main advantages of the flow sheet modifications are pointed out. Subsequent, the specific reboiler heat duty, the specific cooling duty and the specific auxiliary power for the capture plant are shown for the flow sheet modifications. The overall efficiency penalties for the flow sheet modifications are compared and differences are highlighted.
机译:后燃烧捕获(PCC)技术是减少化石燃料发电厂的二氧化碳排放的有希望的可能性。 PCC的主要问题之一是电力输出损失。通过改善工艺设计,可以通过改善溶剂性能来实现溶剂基PCC效率损失的降低。在文献中报告的过程设计有很多不同的过程流程图修改。在这项工作中,评估了捕获工厂的两个修改。为了能够比较这些过程修改,有必要在相同的溶剂和过程条件下评估它们。将改性过程与基本情况进行比较,从超临界粉煤发电厂以及天然气联合循环发电厂处理烟道气。捕获植物中使用的溶剂是通用改进的溶剂,代表可能的未来溶剂。指出了流动纸张修改的主要优点。随后,示出了用于流动片修改的特定再沸器热占性,特定的冷却占型和特定辅助动力。比较流程图修改的整体效率惩罚,突出显示差异。

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