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CO2 capture by modified hollow fiber membrane contactor: Numerical study on membrane structure and membrane wettability

机译:CO2通过改进的中空纤维膜接触器捕获:膜结构和膜润湿性的数值研究

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This work aims at capturing CO2 from natural gas using a verified finite element mathematical model by improving the membrane wettability, membrane structure, the type of absorbents used in the system, and the physical parameters like membrane porosity and the number of fibers used in hollow fiber membrane contactor (HFMC). The model is developed to simulate the CO2 removal using membranes by considering mass transfer equations in the presence of chemical reactions. Simulations were performed using a membrane system including 10 fibers with 175 mm length, 830 mu m outer fiber radius and 450 mu m inner fiber radius. The effect of adding montmorillonite nanoparticles (MMT) in weight percentages of 1%, 3%, and 5% to the PVDF membrane was perused to demonstrate the influence of membrane structure modification on system performance. The results show that the modification of membrane structure with montmorillonite nanoparticles could increase the efficiency of the system in the removal of CO2 particles by 8%. Four absorbents including MEA (monoethanol amine), PZ (piperazine), TEA (triethanolamine), and EDA (ethylenediamine) are used to identify the most effective absorbent where PZ absorbent shows the highest and EDA absorbent has the lowest carbon capture efficiency. Wettability is found to have a considerably negative impact on membrane carbon capture capacity. For instance, the modeling results show that even a 10% wetting of the membrane reduces the efficiency of the CO2 removal process by more than 47%. In addition, the results illustrate that the increase in membrane tortuosity and gas velocity have negative impacts on the separation process, while increase in the absorbent concentration, packing density and porosity enhance the separation of CO2.
机译:这项工作旨在通过通过改善膜润湿性,膜结构,系统中使用的吸收剂类型,以及膜孔隙率等物理参数和中空纤维中使用的纤维数等物理参数来捕获来自天然气的CO2。膜接触器(HFMC)。通过考虑在存在化学反应存在下,通过考虑传质方程来模拟使用膜的CO 2去除二氧化碳去除。使用膜系统进行模拟,包括具有175mm长,830μm外纤维半径和450μm内纤维半径的10纤维。将蒙脱石纳米颗粒(MMT)加入1%,3%和5%的蒙脱石纳米颗粒(MMT),以证明膜结构改性对系统性能的影响。结果表明,用蒙脱石纳米粒子的膜结构改性可以提高系统在除去CO 2颗粒中的效率8%。包括MEA(单乙醇胺),PZ(哌嗪),茶(三乙醇胺)和EDA(乙二胺)的四种吸收剂用于鉴定PZ吸收剂的最有效的吸收剂,其中最高和EDA吸收性具有最低的碳捕获效率。发现润湿性对膜碳捕获能力产生相当大的影响。例如,建模结果表明,即使膜的10%润湿也将二氧化碳去除过程的效率降低超过47%。此外,结果表明,膜曲折和气体速度的增加对分离过程产生负面影响,而吸收浓度的增加,填充密度和孔隙率增强了CO 2的分离。

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