首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Nanosheets of MIL-53(Al) applied in membranes with improved CO2/N-2 and CO2/CH4 selectivities
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Nanosheets of MIL-53(Al) applied in membranes with improved CO2/N-2 and CO2/CH4 selectivities

机译:MIL-53(A1)的纳米蛋白酶施用于具有改进的CO 2 / N-2和CO 2 / CH 4选择性的膜中

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摘要

MIL-68(Al) and MIL-53(Al) are carboxylate-based metal-organic frameworks (MOFs) with the same chemical composition but different structures (polymorphs). In this study, MIL-53(Al) nanosheets of ca. 150 nm in size with an average thickness of 3.5 +/- 0.9 nm were obtained after immersion of a sample composed of MIL-68(Al) and MIL-53(Al) in water under different conditions (ultrasound, stirring, reflux, 60 degrees C and room temperature). The disaggregated MIL-53(Al) nanosheets produced under more severe conditions were suspended in a PDMS solution and then deposited on asymmetric polyimide P84 (R) supports under vacuum filtration to form supported mixed matrix membranes (MMMs). When applied to the separation of CO2/CH4 and CO2/N-2 mixtures, the MMM with MIL-53(Al) nanosheets improved the CO2/CH4 (28.4-28.7 vs. 22.4) and CO2/N-2 (19.9-23.2 vs. 17.5) selectivities of the conventional MIL-53(Al) MMM with higher CO2 permeances (20.8-29.6 GPU vs. 9.5 GPU for CO2/CH4 and 17.7-26.8 GPU vs. 11.2 GPU for CO2/N-2).
机译:MIL-68(AL)和MIL-53(A1)是羧酸盐的金属 - 有机骨架(MOF),具有相同的化学组成,但不同的结构(多晶型物)。在本研究中,MIL-53(AL)CA的纳米液。在浸入不同条件下的水中的MIL-68(Al)和MIL-53(AL)中的样品浸入水中的样品后,获得150nm的平均厚度为3.5 +/- 0.9nm(超声波,搅拌,回流,60高度C和室温)。将在更严重的稳定条件下产生的分解的MIL-53(Al)纳米片悬浮在PDMS溶液中,然后在真空过滤的不对称聚酰亚胺P84(R)上沉积,以形成负载的混合基质膜(MMM)。当施加到CO 2 / CH4和CO2 / N-2混合物的分离时,具有MIL-53(Al)纳米晶片的MMM改善了CO 2 / CH 4(28.4-28.7与22.4)和CO2 / N-2(19.9-23.2)对于具有较高CO2 PermeNces的常规MIL-53(Al)MMM的选择性,具有较高的CO 2(CO 2 / CH4和17.7-26.8GVPU的20.8-29.6 GPU与9.5GPu。

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