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Carbon Dioxide Permeation Characteristics in Asymmetric Polysulfone Hollow Fiber Membrane: Effect of Constant Heating and Progressive Heating

机译:不对称聚砜中空纤维膜中的二氧化碳渗透特性:恒温和渐进加热的影响

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This paper reports the effect of constant heating and progressive on carbon dioxide permeation characteristics in asymmetric hollow fiber polysulfone membranes. Glassy polymers are easily plasticized with the presence of plasticizing agents such as carbon dioxide. Constant heating were applied to the membranes to suppress CO_2 induced plasticization. Membranes treated with constant temperature heating exhibits lower pressure-normalize flux for both carbon dioxide and methane compared to untreated membranes. This was probably due to densification of membrane skin layer during heating process. Denser skin layer increases the resistance in the membrane which resulted in decreased of pressure-normalize flux. A higher density of membrane skin layer was achieved by progressive temperature heat treatment. This further increased the resistance in the membrane resulted in a lower value of pressure normalized-flux. With the application of different feed pressure, an almost linear value of CO_2 pressure-normalize flux shows that plasticization is successfully suppressed by heat treatment. From the results provided in this study, it can be concluded that plasticization of polysulfone hollow fiber membrane is successfully suppressed by heat treatment process.
机译:本文报道了恒温和逐渐进行了不对称中空纤维聚砜膜中二氧化碳渗透特性的影响。通过存在增塑剂如二氧化碳,玻璃状聚合物容易塑化。将恒定加热施加到膜上以抑制CO_2诱导的增塑。与未处理的膜相比,用恒温加热处理的膜对二氧化碳和甲烷进行较低的压力标准化通量。这可能是由于加热过程中膜皮层的致密化。更密集的皮肤层增加了膜中的电阻,导致压力归一化通量降低。通过渐进温度热处理实现较高密度的膜状皮肤层。这进一步增加了膜中的抗性导致压标准化的较低值。随着不同进料压力的施加,CO_2压力标准化通量的几乎线性值表明,通过热处理成功地抑制了塑化。从本研究中提供的结果,可以得出结论,通过热处理方法成功地抑制聚砜中空纤维膜的塑化。

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