Synthesis of Bio-Metal Organic Framework-11 Based Mixed Matrix Membrane for Efficient Carbon Dioxide Separation

Tariq Hussain, Z. N. Qaisrani, A. Ullah, Z. Tahir, A. N. Mengal, M. Sagir
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引用次数: 1

Abstract

Mixed matrix membranes are thought to have the ability to separate gases. The current research investigates the isolation of CO2 from methane (CH4) and nitrogen (N2) using a mixed matrix membrane. Bio-MOF-11 was combined with polyether sulfone to establish a membrane (PES). Experiments were carried out to determine the efficiency of the established membrane. Results showed that the Lewis basic sites present in Bio-MOF-11, which have a higher affinity for CO2, increase the permeability and selectivity of pristine polyether sulfone. At 30% filler loading, CO2 permeability improved from 2.20 to 3.90 Barrer, while CO2/CH4 and CO2/N2 selectivity improved from 9.57 to 11.14 with 30% filler loading. In addition, at 30% filler loading, CO2 solubility drops from 1.57 to 1.20.
生物金属有机骨架-11基混合基质膜的合成及其高效二氧化碳分离研究
混合基质膜被认为具有分离气体的能力。本研究利用混合基质膜从甲烷(CH4)和氮气(N2)中分离CO2。采用聚醚砜与Bio-MOF-11复合制备聚醚砜膜(PES)。实验确定了所建立的膜的效率。结果表明,生物mof -11中存在对CO2具有较高亲和力的Lewis碱基位点,提高了原始聚醚砜的渗透性和选择性。当填料含量为30%时,CO2渗透率从2.20 Barrer提高到3.90 Barrer, CO2/CH4和CO2/N2选择性从9.57 Barrer提高到11.14 Barrer。此外,在30%填充量下,CO2溶解度从1.57下降到1.20。
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