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Absorption of carbon dioxide into aqueous solutions using hollow fiber membrane contactors

机译:使用中空纤维膜接触器将二氧化碳吸收到水溶液中

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Studies on absorption of CO_2 into aqueous solutions using hollow fiber membrane modules (HFMM) are reported. These studies were done in commercially available HFMM of 0.0254 m diameter and 0.20 m length, and 0.051 m diameter and 0.61 m length. The absorbents tested were water, aqueous NaOH (2 N or ~ 8 wt%) and aqueous diethanolamine (0.5 M or 5.25 wt%). Correlations for predicting liquid and gas phase mass transfer coefficients were developed using the 0.0254 m HFMM. These correlations were found to successfully predict the mass transfer rates in the 0.051 m HFMM. Effective gas-liquid contact areas were found to be 2324 and 870 m~2/m~3 for the 0.0254 m and 0.0510 m HFMM, respectively. These values are lower than the nominal surface area of the lumen for both contactors. The membrane mass transfer coefficients (k_M) determined were much lower than those theoretically calculated for completely non-wetted pores for aqueous amine and NaOH absorbents indicating that the pores are partially wetted. In fact, even marginal (< 2%) wetting of the pores can result in a membrane resistance that can be as high as 60% of the total mass transfer resistance.
机译:报告了使用中空纤维膜组件(HFMM)将CO_2吸收到水溶液中的研究。这些研究是在市售的直径为0.0254 m,长度为0.20 m,直径为0.051 m,长度为0.61 m的HFMM中进行的。测试的吸收剂为水,NaOH水溶液(2 N或〜8 wt%)和二乙醇胺水溶液(0.5 M或5.25 wt%)。使用0.0254 m HFMM建立了预测液相和气相传质系数的相关性。发现这些相关性可成功预测0.051 m HFMM中的传质速率。对于0.0254 m和0.0510 m的HFMM,发现有效的气液接触面积分别为2324和870 m〜2 / m〜3。这些值均低于两个接触器的管腔标称表面积。所确定的膜传质系数(k_M)远低于理论上针对胺和NaOH水溶液吸收剂的完全未润湿的孔所计算的那些,这表明孔被部分润湿。实际上,即使是孔的边缘浸润(<2%)也可能导致膜阻力达到总传质阻力的60%。

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