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Operation of a Mixing Seai Valve in Calcium Looping for CO2 Capture

机译:Co2捕获钙循环中混合海瓣的​​操作

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Calcium looping has attracted a great deal of attention among researchers investigating CO2 capture systems. Energy consumption in the regeneration reactor is one of the most important issues. However, as a high-temperature process, calcium looping enables an efficient heat recovery in the capture process itself. The objective of this study is to reduce the energy consumption in the calciner by increasing the temperature of the solids entering this reactor. A calcium looping system including a mixing seal valve is modeled and analyzed to determine the potential advantages this configuration entails. The influence of different seal valve aeration gases, carbonator inventories and solid circulation between reactors is assessed- The reduction of the fuel consumption when the mixing seal valve is aerated with flue gas tends to dilute the CO2 stream- When using CO2, the achievement of substantial energy savings may imply an important increase of the solid flows in the system. Aeration of the mixing seal valve with both gases, so that each gas aerates one exit, is also proposed to address these issues. Results show a significant potential in terms of coal and oxygen savings and reduction of the CO2 generated in the capture system.
机译:钙循环在研究CO2捕获系统的研究人员中引起了大量的注意。再生反应堆中的能量消耗是最重要的问题之一。然而,作为高温工艺,钙循环使得能够在捕获过程本身中有效热恢复。本研究的目的是通过增加进入该反应器的固体的温度来降低煅烧炉的能量消耗。包括混合密封阀的钙循环系统进行建模和分析,以确定这种配置需要的潜在优势。评估不同密封阀通气气体,碳酸盐存放和固体循环的影响 - 评估混合密封阀与烟道气体充气时的燃料消耗的降低趋于稀释CO2流 - 当使用CO2时,实现大量的成就节能可能意味着系统中固体流动的重要增加。将混合密封阀与两个气体进行曝气,使得每个气体灌胃一个出口,也提出解决这些问题。结果在煤炭和氧气节省和捕获系统中产生的二氧化碳的减少方面具有显着潜力。

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