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首页> 外文期刊>International Journal of Greenhouse Gas Control >Low-temperature vacuum stripping of CO2 from aqueous amine solutions using thin-film silicalite-filled PDMS composite membranes
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Low-temperature vacuum stripping of CO2 from aqueous amine solutions using thin-film silicalite-filled PDMS composite membranes

机译:使用薄膜硅沸石填充的PDMS复合膜从胺水溶液中低温真空汽提CO2

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摘要

Carbon dioxide (CO2) recovery by vacuum stripping technology using membranes was studied as an alternative to the desorption process at low temperatures (below 120 degrees C) in conventional aqueous amine absorption process. Composite membranes were prepared by coating hydrophobic silicalite-filled polydimethylsiloxane (PDMS) layers on polyethylene (PE) porous supports and used as new membrane strippers for CO2 recovery to prevent the typical pore wetting problem of hydrophobic porous membranes. Aqueous 30 wt% solutions of monoethanolamine (MEA), diethanolamine (DEA), and triethanolamine (TEA) were used as absorbents in the desorption process. CO2 fluxes were measured under various operation conditions, such as different vacuum pressures, stripping temperatures, CO2 loadings, types of amine solutions and operation time. CO2 stripping fluxes increased with increasing temperature and CO2 loading of amine solutions as well as with decreasing stripping pressures because of the enhanced upstream and downstream driving forces. CO2 stripping fluxes were much higher in the TEA and DEA solutions than in the MEA solutions. The thin-film silicalite-filled PDMS composite membranes showed excellent long-term stability in the vacuum stripping process when compared with porous polytetrafluoroethylene (PTFE) membranes
机译:研究了通过使用膜的真空汽提技术回收二氧化碳(CO2)的方法,该方法可替代传统的胺水溶液吸收法在低温(低于120摄氏度)下的解吸过程。通过在聚乙烯(PE)多孔载体上涂覆疏水硅沸石填充的聚二甲基硅氧烷(PDMS)层来制备复合膜,并将其用作用于CO2回收的新型膜剥离剂,以防止疏水性多孔膜的典型孔润湿问题。在解吸过程中,单乙醇胺(MEA),二乙醇胺(DEA)和三乙醇胺(TEA)的30 wt%水溶液用作吸收剂。在各种操作条件下(例如,不同的真空压力,汽提温度,CO2负载量,胺溶液的类型和操作时间)测量CO2通量。由于提高的上游和下游驱动力,CO 2汽提通量随着温度的升高和胺溶液的CO 2负载的增加以及汽提压力的降低而增加。 TEA和DEA解决方案中的CO2汽提通量比MEA解决方案中的高得多。与多孔聚四氟乙烯(PTFE)膜相比,填充硅质岩的PDMS复合膜在真空汽提过程中显示出优异的长期稳定性。

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