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Tunable integration of absorption-membrane-adsorption for efficiently separating low boiling gas mixtures near normal temperature

机译:吸收膜吸附的可调谐集成可有效分离常温附近的低沸点气体混合物

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摘要

Separation of low boiling gas mixtures is widely concerned in process industries. Now their separations heavily rely upon energy-intensive cryogenic processes. Here, we report a pseudo-absorption process for separating low boiling gas mixtures near normal temperature. In this process, absorption-membrane-adsorption is integrated by suspending suitable porous ZIF material in suitable solvent and forming selectively permeable liquid membrane around ZIF particles. Green solvents like water and glycol were used to form ZIF-8 slurry and tune the permeability of liquid membrane surrounding ZIF-8 particles. We found glycol molecules form tighter membrane while water molecules form looser membrane because of the hydrophobicity of ZIF-8. When using mixing solvents composed of glycol and water, the permeability of liquid membrane becomes tunable. It is shown that ZIF-8/water slurry always manifests remarkable higher separation selectivity than solid ZIF-8 and it could be tuned to further enhance the capture of light hydrocarbons by adding suitable quantity of glycol to water. Because of its lower viscosity and higher sorption/desorption rate, tunable ZIF-8/water-glycol slurry could be readily used as liquid absorbent to separate different kinds of low boiling gas mixtures by applying a multistage separation process in one traditional absorption tower, especially for the capture of light hydrocarbons.
机译:在过程工业中,低沸点气体混合物的分离受到广泛关注。现在,它们的分离严重依赖于能量密集的低温过程。在这里,我们报告了一种伪吸收过程,用于分离常温附近的低沸点气体混合物。在该过程中,通过将合适的多孔ZIF材料悬浮在合适的溶剂中并在ZIF颗粒周围形成选择性可渗透的液膜来整合吸收膜吸附。使用绿色溶剂(例如水和乙二醇)形成ZIF-8浆液,并调节ZIF-8颗粒周围液膜的渗透性。我们发现,由于ZIF-8的疏水性,乙二醇分子形成更紧密的膜,而水分子形成较软的膜。当使用由乙二醇和水组成的混合溶剂时,液膜的渗透性变得可调。结果表明,ZIF-8 /水浆液始终显示出比固体ZIF-8更高的分离选择性,可以通过向水中添加适量的乙二醇来对其进行调节,以进一步提高对轻质烃的捕集率。由于其较低的粘度和较高的吸附/解吸速率,可调谐的ZIF-8 /水乙二醇浆液可通过在一个传统的吸收塔中采用多级分离工艺,特别是用作液体吸收剂来分离不同种类的低沸点气体混合物,特别是用于捕获轻质烃。

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