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Novel design of integrated gasification combined cycle (IGCC) power plants with CO_2 capture

机译:具有CO_2捕集的整体气化联合循环(IGCC)发电厂的新颖设计

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摘要

To develop the new integrated gasification combined cycle (IGCC) power plants with CO2 capture, first the integrated intermittent chemical looping air separation (IICLAS) unit is added to improve the coal gasification and carries out the oxy-fuel combustion, second the CO2 compression and sequestration (CCS) unit is added to achieve deep reductions in emissions of CO2 to the atmosphere. Compared to the conventional cryogenic air separation (CAS) unit, the IICLAS unit continuously produces the high-purity oxygen without the solid looping cycles and it also generates the additional electricity by virtue of the heating jacket for the oxy-fuel combustion of methane (OCM) and the waste heat recovery mechanism. A few comparisons show that the IICLAS-based IGCC + CCS power system (Design 2) can effectively increase 12.2% of the gross power compared to the CAS-based IGCC + CCS power system (Design 1). For the dual IICLAS-based IGCC + CCS power system (Design 3), the OCM units are removed and the flue gas is split to reduce the circulated steam/water. Finally, Design 3 can ensure the lowest oxygen supply rate by 50.67 kg/s, the highest net efficiency by 40.25%, and the largest Kcc factor by 0.58. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了开发具有CO2捕集的新型整体气化联合循环(IGCC)发电厂,首先要添加集成的间歇性化学回路空气分离(IICLAS)单元,以改善煤气化并进行含氧燃料燃烧,其次是CO2压缩和增加了固碳(CCS)装置,以实现向大气中二氧化碳排放量的大幅减少。与传统的低温空气分离(CAS)单元相比,IICLAS单元连续产生高纯度氧气,而无需进行固体循环,并且还通过加热套产生额外的电能,用于甲烷的氧燃料燃烧(OCM) )和废热回收机制。一些比较表明,与基于CAS的IGCC + CCS电源系统(设计1)相比,基于IICLAS的IGCC + CCS电源系统(总设计功率)可以有效地增加总功率的12.2%。对于基于IICLAS的双IGCC + CCS电源系统(设计3),将OCM单元移开,将烟气分流以减少循环的蒸汽/水。最后,设计3可以确保最低的供氧速率为50.67 kg / s,最高的净效率为40.25%,最大的Kcc系数为0.58。 (C)2018 Elsevier Ltd.保留所有权利。

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