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Optimization of cryogenic CO2 purification for oxy-coal combustion

机译:氧煤燃烧低温CO2纯化优化

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Oxyfuel combustion is a leading potential CO2 capture technology for power plants. As the flue gas (FG) consists of mainly H2O and CO2, a simpler and more energy-efficient CO2 purification method can be used instead of the standard amine-based chemical absorption approach. For the system of oxyfuel combustion with cryogenic CO2 purification, decreasing the oxygen purity reduces the energy consumption of the Air Separation Unit (ASU) but increases the energy consumption for the downstream cryogenic purification. Thus there exists a trade-off between the energy consumption of the ASU and that for cryogenic purification. This paper investigates the potential efficiency improvement by optimizing this trade-off The simulated results show that there exists an optimum flue gas condensing pressure for the cryogenic purification, which is affected by the flue gas composition. In addition, decreasing the oxygen purity reduces the combined energy consumption of the ASU and the cryogenic purification, and therefore can improve the electrical efficiency. In summary, prior oxyfuel combustion analyses have assumed a high oxygen purity level of 95 mol% or 99 mol% for the combustion air, which achieves a high CO2 concentration in the flue gases. In this Paper, we demonstrate that a lower level of oxygen purity, such as 80 mol%, in conjunction with a more extensive cryogenic purification of the flue gases can lower the total energy consumption, thereby yielding a significant benefit. However, for oxygen purity levels lower than 75 mol%, it may not be possible to still use the two-stage flash system shown here to achieve a CO2 purity of 95 mol% and a CO2 recovery rate of 90% simultaneously.
机译:Oxyfuel燃烧是发电厂领先的CO2捕获技术。随着烟气(FG)主要由H 2 O和CO 2组成,可以使用更简单和更节能的CO2净化方法,而不是标准的基于胺类的化学吸收方法。对于具有低温CO 2净化的氧荷燃烧系统,降低氧纯度降低了空气分离单元(ASU)的能量消耗,但增加了下游低温纯化的能量消耗。因此,在ASU的能量消耗与低温纯化之间存在折衷。本文通过优化这种权衡来研究仿真结果表明,在低温净化的情况下存在最佳的烟气冷凝压力,这受烟道气组成的影响。此外,减少氧纯度降低了ASU的组合能耗和低温净化,因此可以提高电效率。总之,氧气燃烧分析已经假设燃烧空气的95mol%或99mol%的高氧纯度水平,这在烟道气中实现了高CO 2浓度。在本文中,我们证明,与烟道气的更广泛的低温净化相结合的氧纯度较低的氧纯度可以降低总能量消耗,从而产生显着的益处。然而,对于低于75摩尔%的氧纯度水平,可能无法使用此处所示的两级闪光系统,以同时实现95mol%的CO 2纯度和90%的CO 2回收率。

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