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Simultaneous absorption of carbon dioxide and nitrogen dioxide from simulated flue gas stream using gas-liquid membrane contacting system

机译:用气液膜接触系统同时吸收模拟烟气流中的二氧化碳和二氧化氮

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摘要

Membrane gas contactors are a promising alternative to conventional post-combustion carbon capture technologies. However, residuals of the other acid gas compounds can exist in the flue gas streams emitted from industrial facilities, having a notable impact on the absorption performance of the membrane system. Simultaneous removal of CO2and NO2from a simulated flue gas stream was carried out in a polytetrafluoroethylene (PTFE) hollow fiber gas-liquid membrane contacting (GLMC) system using different scrubbing solutions. A series of experiments were conducted to study the effects of operating conditions such as gas and liquid cross flow velocities, concentration of feed gas, absorbent nature and concentration, and long-term performance of the GLMC system on the removal efficiencies as well as mass transfer rates of CO2and NO2. Experimental results indicated that simultaneous absorption of CO2and NO2were enhanced with increasing the liquid-phase cross flow velocity, decreasing gas-phase cross flow velocity, and using chemical stripping absorbents. Moreover, it was shown the sodium hydroxide to be a superior absorbent as compared to alkanolamine solutions for the co-capture of CO2and NO2species. It was observed that low concentrations of NO2in the feed gas had a minimal impact on the decarbonization of GLMC system. The durability of the membrane system was also evaluated by running the simultaneous gas removal experiments over a 24-h period. The consistency of the absorption efficiency results confirmed the potential of using PTFE membrane system for the simultaneous absorption of CO2and NO2gases.
机译:膜气体接触器是传统燃烧后碳捕获技术的有希望的替代品。然而,其他酸性气体化合物的残留物可以存在于从工业设施发出的烟道气流中,对膜系统的吸收性能产生显着影响。通过不同的擦洗溶液在聚四氟乙烯(PTFE)中空纤维气液膜接触(GLMC)系统中进行模拟烟道气流的同时除去CO2和NO2。进行了一系列实验,以研究诸如气体和液体交叉流速,饲料气体浓度,饲料的浓度,吸收性和浓度的浓度以及GLMC系统的长期性能以及传质的长期性能CO2AND NO2的率。实验结果表明,通过增加液相交叉流速,降低气相交叉流速,以及使用化学剥离吸收剂,同时吸收CO2和NO2WERE增强。此外,与链烷醇胺溶液相比,将氢氧化钠显示为优异的吸收剂,用于共捕获CO2和NO2species。观察到,饲料气体的低浓度NO 2对GLMC系统的脱碳产生了最小的影响。还通过在24小时内运行同时的气体去除实验来评估膜系统的耐久性。吸收效率结果的一致性证实了使用PTFE膜系统同时吸收CO2和NO2Gase的可能性。

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