Extraction of dissolved methane from aqueous solutions by membranes: Modelling and parametric studies

ty10086 提交于 周四, 08/26/2021 - 13:09
文章英文标题
Extraction of dissolved methane from aqueous solutions by membranes: Modelling and parametric studies
正文
摘要\n对膜法从水溶液中萃取溶解甲烷进行了参数研究。对基于橡胶聚合物(如聚二甲基硅氧烷( PDMS )和聚乙醚-b-酰胺( PEBA ) )的非多孔膜和疏水微孔膜(如聚四氟乙烯( PTFE ) )进行了评价。通过模型建立和参数分析,评价了进料侧液相浓差极化对水溶液中溶解甲烷萃取的影响。研究表明,当液体边界层中浓差极化可忽略不计时,微孔PTFE膜在甲烷通量(比非微孔膜高3 ~ 5个数量级)和湿渗透流中甲烷浓度( ~ 97mol . %与PTFE膜相比)方面均优于非微孔膜。但在正常水动力条件下,进料侧浓差极化的影响不可忽略,甲烷抽提通量受到明显折中( PTFE和PDMS膜的通量降低90 %,PEBA膜的通量降低50 %,渗透压力为10 k Pa )。研究发现,增大渗透压力会以降低通量为代价,减缓浓差极化。适当控制进料液的水动力条件,以增强膜表面附近的传质,似乎是脱气应用的一条实际途径。
文章内容(英文)
Abstract(#br)A parametric study was carried out for the extraction of dissolved methane from aqueous solutions using membranes. Both nonporous membranes based on rubbery polymers (e.g., polydimethylsiloxane (PDMS) and poly(ether-b-amide) (PEBA)) and hydrophobic microporous membranes (e.g., polytetrafluoroethylene (PTFE)) were evaluated. Through modelling and parametric analyses, the effects of concentration polarization in the liquid phase at the feed side on extraction of dissolved methane from aqueous solutions were evaluated. It was shown that when the concentration polarization in the liquid boundary layer was negligible, the microporous PTFE membrane outperformed the nonporous membranes in terms of methane flux (3–5 orders of magnitude higher than the nonporous membranes) and methane concentration in the wet permeate stream (~97 mol.% with the PTFE membrane). However, under normal hydrodynamic conditions, the effect of concentration polarization at the feed side was found not to be negligible, and the methane extraction flux was compromised significantly (with a flux reduction of 90% for PTFE and PDMS membranes and 50% for PEBA membrane, at a permeate pressure of 10 kPa). It was found that increasing the permeate pressure would mitigate concentration polarization at the expense of lowered flux. Proper control of the hydrodynamic conditions of feed liquid to enhance mass transfer near the membrane surface appears to be a practical approach to the degassing application.
来源出处
Journal|[J]Journal of Membrane ScienceVolume 596, 2020.
DOI
https://doi.org/10.1016/j.memsci.2019.117594

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