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Bimodal-porous hollow MgO sphere embedded mixed matrix membranes for CO2 capture

机译:双峰孔空心MgO球体嵌入式混合基质膜用于二氧化碳捕获

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We reported the use of high-performance, CO2-accelerated mixed matrix membranes (MMMs) consisting of sub-micron porous magnesium oxide (MgO) fillers and an amphiphilic polymer matrix. Bimodal-porous, hollow MgO (bh-MgO) spheres were synthesized through a one-step spray pyrolysis and precipitation method. The synthesized bh-MgO spheres were introduced into poly(vinyl chloride)-graft-poly(oxyethylene methacrylate) (PVC-g-POEM), forming MMMs for CO2/N-2 separation. The amphiphilic property of PVC-g-POEM ensured an intimate contact between the bh-MgO filler and polymer matrix with the encapsulation of bh-MgO spheres. The bimodal porous and hollow structure of bh-MgO decreased the gas diffusion resistance in the membranes. Moreover, specific interactions between the surfaces of the bh-MgO and CO2 molecules enhanced the CO2 solubility and accelerate the CO2 molecules more than the N-2 molecules. The dual-functional bh-MgO sphere enhanced the CO2 permeability through physical and chemical mechanisms, simultaneously. The best gas separation performance was obtained in the MMM with 10 wt% bh-MgO fillers, which demonstrated a CO2 permeability of 179.2 Barrer and 42.6 of CO2/N-2 selectivity.
机译:我们报道了使用由亚微米多孔氧化镁(MgO)填料和两亲性聚合物基质组成的高性能CO 2加速混合基质膜(MMM)。通过一步喷雾热解和沉淀法合成双峰,空心MgO(BH-MgO)球体。将合成的BH-MGO球体引入聚(氯乙烯) - 移植物 - 聚(氧甲基丙烯酸酯)(PVC-G-POEM)中,形成CO 2 / N-2分离的MMM。 PVC-G-POEM的两亲性质确保了BH-MgO填料与聚合物基质之间的紧密接触与BH-MgO球体的包封。 BH-MgO的双峰多孔和中空结构降低了膜中的气体扩散抗性。此外,BH-MgO和CO 2分子的表面之间的特异性相互作用增强了CO 2溶解度,并比N-2分子加速了CO 2分子。双功能性BH-MGO球通过同时通过物理和化学机制提高了CO2渗透率。在具有10wt%BH-MgO填料的MMM中获得最佳气体分离性能,其证明了179.2个漏极和42.6的CO 2 / N-2选择性的CO 2渗透性。

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