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Integrated gasification combined cycle with carbon dioxide capture by elevated temperature pressure swing adsorption

机译:集成气化联合循环与高温变压吸附捕集二氧化碳

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This paper investigates the CO2 capture energy consumption via elevated-temperature pressure swing adsorption (ET-PSA) for CO2/H-2 separation. IGCC power plants with ET-PSA, with the conventional Selexol process and without CO2 capture are built in Aspen Plus. The CO2 capture energy consumption of ET-PSA is evaluated by the specific primary energy consumption for CO2 avoided (SPECCA), which is a function of the net electrical efficiency and the specific CO2 emission rate. The ET-PSA unit with different processes simulated in gPROMS is coupled into the IGCC model, the operation parameters of which are analyzed to achieve the lowest SPECCA. The results show that the CO2 capture energy consumption has a tendency to decrease by increasing the adsorption time, the residence time, and the purge-to-feed ratio; reducing the purge ratio; and adding the CO2 reflux. The SPECCA of ET-PSA with the 5-3-1 process is 2.79 MJ/kg(CO2) with a 90.5% CO2 capture ratio, which is 11.71% lower than that of the Selexol process. An effective way to further reduce the SPECCA of ET-PSA is to add rinse and purge steps, whose energy loss mainly comes from the consumption of high-temperature steam. The calculated SPECCA of ET-PSA with rinse and purge steps is 2.32-2.52 MJ/kg(CO2), which is 20.3-26.6% lower than that of the Selexol process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了通过高温变压吸附(ET-PSA)分离CO2 / H-2来捕获CO2的能量。在Aspen Plus中建造了具有ET-PSA,采用常规Selexol工艺且无二氧化碳捕集的IGCC发电厂。 ET-PSA的CO2捕集能耗通过避免的CO2的特定一次能耗(SPECCA)进行评估,该能耗是净电效率和特定CO2排放速率的函数。将在gPROMS中模拟的具有不同过程的ET-PSA单元耦合到IGCC模型中,对其运行参数进行分析以获得最低的SPECCA。结果表明,通过增加吸附时间,停留时间和吹扫进料比,CO2捕集能耗有降低的趋势。降低净化率;并增加二氧化碳的回流。采用5-3-1工艺的ET-PSA的SPECCA为2.79 MJ / kg(CO2),CO2捕集率为90.5%,比Selexol工艺低11.71%。进一步降低ET-PSA的SPECCA的有效方法是增加冲洗和吹扫步骤,其能量损失主要来自高温蒸汽的消耗。通过冲洗和吹扫步骤计算出的ET-PSA的SPECCA为2.32-2.52 MJ / kg(CO2),比Selexol工艺低20.3-26.6%。 (C)2016 Elsevier Ltd.保留所有权利。

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