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Study on CO2 Desorption Behavior of a PDMS-SiO2 Hybrid Membrane Applied in a Novel CO2 Capture Process

机译:新型CO2捕获过程中PDMS-SiO2杂交膜的CO2解吸行为研究

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In this present work, a novel approach has been proposed by which a solvent absorption and membrane desorption methods can significantly reduce the carbon dioxide (CO2) emission and energy consumption. In this method, the CO2 capture processing is based on the combination of membrane and physical solvent. Here, dimethyl carbonate and polydimethylsiloxane (PDMS)-SiO2 nanocomposite were used as the physical solvent and desorption membrane, respectively. However, the main focus of this research was on the CO2 desorption behavior of PDMS-SiO2 hybrid membrane. To do so, the influence of the operat'ng conditions and membrane properties on the pervaporation process to capture CO2 have been investigated. The PDMS-SiO2 hybrid membrane containing 10 wt % SiO2 was the most effective membrane. Results revealed that increase in CO, concentration from 1.5 to 3 wt % led to decrease in the selectivity from 94 to 47 and increase in flux from 1.7 to 5.38 (kg/m(2).h). In addition, an increase in temperature increased the flux and reached the highest level (8.17 kg/m(2).h) at 40 degrees C. However, the selectivity decreased to 36.13. It was found that the addition of SiO2 nanoparticles to the PDMS membrane not only enhanced the membrane performance but also decreased the energy consumption about 75% compared with gas stripping method and mass transfer about 49% compared with pure PDMS membrane. Finally, these results illustrated that such a novel technique used for pervaporation separation process is a green and promising alternative to separate CO2, from the physical solvent.
机译:在本工作中,已经提出了一种新方法,通过该方法,可以显着降低溶剂吸收和膜解吸方法,可以显着降低二氧化碳(CO2)排放和能量消耗。在该方法中,CO2捕获处理基于膜和物理溶剂的组合。这里,使用二甲酯和聚二甲基硅氧烷(PDMS)-SiO2纳米复合物分别用作物理溶剂和解吸膜。然而,该研究的主要重点是PDMS-SiO2杂化膜的二氧化碳解吸行为。为此,已经研究了操作的影响和膜特性对捕获CO2的渗透蒸发过程的影响。含有10wt%SiO 2的PDMS-SiO 2杂化膜是最有效的膜。结果表明,CO,浓度从1.5〜3wt%的浓度导致从94-47的选择性降低,并从1.7〜5.38增加(kg / m(2).h)。此外,温度的增加增加了助焊剂,并在40℃下达到最高水平(8.17kg / m(2).h)。然而,选择性降低至36.13。发现将SiO 2纳米颗粒加入到PDMS膜上不仅增强了膜性能,而且与纯PDMS膜相比,与气体汽提方法和大约49%的质量转移约为75%的能量消耗。最后,这些结果表明,用于渗透性分离过程的这种新技术是从物理溶剂中分离CO 2的绿色和有希望的替代品。

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