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Process Simulation of a Dual-Stage Selexol Process for 95% Carbon Capture Efficiency at an Integrated Gasification Combined Cycle Power Plant

机译:双级selexol工艺在整体煤气化联合循环发电厂95%碳捕集效率的过程模拟

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摘要

It was aimed to simulate a conventional dual-stage Selexol process for removing CO2 and H2S simultaneously from a synthesis gas (syngas) originated from a typical Integrated Gasification Combined Cycle (IGCC) power plant driven by a dry-coal fed gasifier using Honeywell UniSim R400. The solubilities of syngas components on Selexol were predicted by temperature-dependant Henry’s law constants being newly evaluated in this study based on the experimental data in Xu et al. (1992). The operating conditions of the dual-stage Selexol unit were determined so as to meet simultaneously various performance targets, such as 99+% H2 recovery, 90% CO2 recovery, 99+% H2S recovery, and less than 20 ppm H2S in CO2 product. By and large the resulting energy consumptions of the Selexol process were in good agreement with those reported in DOE NETL (2010) that this study was based on. It was shown that the integrated dual-stage Selexol unit could achieve 95% carbon capture rate as well as 90% by simply changing the operating conditions. By contrast a CO2 removal Selexol process having not an input of lean solvent generated by thermal regeneration could not achieve 95% carbon capture rate due to a pinch point formed at the top of the CO2 absorber.
机译:它旨在模拟常规的两步Selexol工艺,以同时从典型的集成气化联合循环(IGCC)发电厂产生的合成气(syngas)中同时去除CO2和H2S,该电厂由使用霍尼韦尔UniSim R400的干煤进料气化炉驱动。合成气组分在Selexol上的溶解度是根据温度依赖性的亨利定律常数预测的,该常数是根据Xu等人的实验数据在本研究中新评估的。 (1992)。确定两级Selexol单元的运行条件,以便同时满足各种性能指标,例如,在CO2产品中99 %%的H2回收率,90%CO2的回收率,99 +%H2S的回收率和少于20 ppm的H2S。总体来说,Selexol工艺的能耗与本研究基于的DOE NETL(2010)中报告的能耗非常吻合。结果表明,集成的双级Selexol装置只需更改操作条件即可实现95%的碳捕获率和90%的碳捕获率。相反,由于在CO2吸收塔顶部形成的收缩点,没有输入热再生产生的贫溶剂的Selexol工艺无法实现95%的碳捕获率。

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