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Process assessment and sensitivity analysis of CO2 capture by aqueous methyldiethanolamine plus piperazine blended solutions using membrane contactor: Model development of kinetics and mass transfer rate

机译:使用膜接触器的甲基二乙醇胺水水溶液混合溶液的CO2捕获的过程评估和敏感性分析:动力学和传质率的模型发展

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摘要

A comprehensive steady-state, rate-based mathematical model for CO2 capture in a hollow fiber membrane contactor (HFMC) for non-wetted mode has been developed by taking into accounts the mass transfer resistances and chemical reactions. Aqueous MDEA + PZ blended solution as the CO2 absorbent was flowed in the tube side and the gas mixture was circulated counter-currently in the shell side of HFMC. The model predictions are verified with the experimental results of CO2 absorption in a HFMC reported in literature. In addition, the effects of operating conditions on the membrane performance such as gas and liquid flow rates, liquid temperature, initial CO2 partial pressure, solvent concentration and fiber numbers in the module are investigated and discussed. To investigate the influence of solvent on the separation process, some common industrial chemical absorbents including MDE, MEA, TEA, MDEA and PZ are compared with MDEA + PZ blended solution. Adding small amount of PZ as a promoter to MDEA solution has significant effect on the CO2 absorption. The results show that the CO2 absorption reaction with MDEA + PZ blended solution is faster than that with TEA and MDEA and also comparable with DEA, but it is slower than those with MEA and PZ. The results indicated that CO2 removal performance enhances with increasing the fiber numbers, liquid temperature and liquid flow rate in the tube side, but increasing gas flow rate in the shell side has a negative effect on the absorption performance.
机译:通过考虑到传质电阻和化学反应,开发了一种用于非湿度模式的中空纤维膜接触器(HFMC)中的CO2捕获的综合稳态的数学模型。将MDEA + PZ混合溶液在管侧流动,并且气体混合物在HFMC的壳侧循环反击。通过在文献中报告的HFMC中的CO2吸收的实验结果验证了模型预测。此外,研究并讨论了模块中的膜性能对膜性能,液体温度,初始CO 2分压,溶剂浓度和纤维数的影响。为了研究溶剂对分离过程的影响,将一些常见的工业化学吸收剂与MDEA + PZ混合溶液进行比较。作为MDEA溶液的促进剂加入少量PZ对CO 2吸收具有显着影响。结果表明,与MDEA + PZ混合溶液的二氧化碳吸收反应比茶叶和MDEA更快,也与DEA相当,但它比MEA和PZ的慢。结果表明,CO 2去除性能随着管侧的纤维数,液体温度和液体流速的增加而增强,但是壳体侧的气体流速增加对吸收性能的负面影响。

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