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Regeneration energy analysis of NH3-based CO2 capture process integrated with a flow-by capacitive ion separation device

机译:结合流通式电容离子分离装置的基于NH3的CO2捕集过程的再生能量分析

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摘要

The flow-by capacitive ion separation (CIS) device was introduced into the NH3-based CO2 capture process for reducing the regeneration energy. Regeneration energy analysis of the NH3-based CO2 capture process integrated with the CIS device under different flow rates, NH3 concentrations and CO2 loadings of the rich solvent (Richout) flowing into the CIS device was performed. The flow rates, NH3 concentrations and CO2 loadings of Richout considered in this paper are 120-150 L/min, 2.0-3.0 mol/L, and 0.3-0.5, respectively. When choosing suitable operating parameters of the CIS device, the flow rate of the concentrated ion stream flowing out of the CIS device decreases. Therefore, the introduction of the CIS device into the NH3-based CO2 capture process can lead to a significant reduction of the regeneration energy, and the regeneration energy can be reduced by above 20%. Particularly, for the case that the NH3 concentration of Richout is 2.0 mol/L, the regeneration energy can be reduced by up to 35%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:流式电容离子分离(CIS)设备被引入基于NH3的CO2捕集工艺中,以减少再生能量。在不同流速,流入CIS​​设备的富溶剂(Richout)的NH3浓度和CO2负载下,对与CIS设备集成的基于NH3的CO2捕获过程进行了再生能量分析。本文中考虑的Richout的流速,NH3浓度和CO2负荷分别为120-150 L / min,2.0-3.0 mol / L和0.3-0.5。当选择合适的CIS设备操作参数时,从CIS设备流出的浓缩离子流的流速会降低。因此,将CIS设备引入基于NH3的CO2捕集过程中可导致显着降低再生能量,并且可将再生能量降低20%以上。特别是对于Richout的NH3浓度为2.0 mol / L的情况,再生能量最多可降低35%。 (C)2017 Elsevier Ltd.保留所有权利。

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