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Gas transport properties of cellular hollow fiber membranes based on LLDPE/LDPE blends

机译:基于LLDPE / LDPE混合物的细胞中空纤维膜的气体传输性能

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The production of foamed hollow fiber membranes (HFMs) is presented based on polymer blends using various concentrations of linear low-density polyethylene (LLDPE) and low-density polyethylene (LPDE) combined with azodicarbonamide (chemical blowing agent) to prepare samples via twin-screw extrusion. In particular, the blowing agent concentration as well as the stretching speed were found to be the most important parameters to achieve a good cellular structure for membrane application. From the samples obtained, a complete set of morphological, thermal, and gas transport characterization was performed. The results show that LLDPE/LDPE blends compared to neat LLDPE lead to higher cell density at high stretching speed, which is appropriate for membranes having higher gas permeability and selectivity due to lower cell wall thickness. The results also show that the developed cellular structure has high potential for the continuous production of HFMs for different gas separation, especially for hydrogen recovery.
机译:利用不同浓度的线性低密度聚乙烯(LLDPE)和低密度聚乙烯(LPDE)与偶氮二甲酰胺(化学发泡剂)通过双螺杆挤出制备样品,以聚合物共混物为基础,制备泡沫中空纤维膜(HFMs)。特别是,发泡剂浓度和拉伸速度被发现是实现膜应用的良好细胞结构的最重要参数。从获得的样品中,进行了一整套形态学、热学和气体传输表征。结果表明,与纯LLDPE相比,LLDPE/LDPE共混物在高拉伸速度下具有更高的细胞密度,这适用于由于较低的细胞壁厚度而具有更高气体渗透性和选择性的膜。研究结果还表明,所开发的多孔结构对于连续生产不同气体分离的HFMs,尤其是氢气回收具有很大的潜力。

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