Chaudhari Shivshankar, Jeong YeWon, Shin HyeonTae, Jo SeWook, Shon MinYoung, Nam SeungEun, Park YouIn
Department of Industrial Chemistry, Pukyong National University, San 100, Yongdang-dong, Nam-gu, Busan 608-739, Republic of Korea.
Center for Membranes, Korea Research Institute of Chemical Technology, 141 Gajeong-ro, Yuseong-gu, Daejeon 305-600, Republic of Korea.
Polymers (Basel). 2024 Mar 18;16(6):835. doi: 10.3390/polym16060835.
Composite membranes with a polyvinyl alcohol (PVA) selective layer composed of well-dispersed hydrophilic kaolinite particles coated on a polyvinylidene fluoride (PVDF) support were developed. They were applied to the pervaporation dehydration of the industrially important epichlorohydrin (ECH)/isopropanol (IPA)/water ternary mixture. In comparison with raw kaolinite (RK), hydrophilic kaolinite (HK) enhanced the mechanical properties, hydrophilicity, and thermal stability of the PVA selective layer, as confirmed by universal testing, the contact angle, and TGA analyses, respectively. The pervaporation results revealed that the addition of HK particles significantly enhanced the separation factor (3-fold). Only a marginal reduction in flux was observed with ECH/IPA/water, 50/30/20 (/ %) at 40 °C. An HK particle concentration of 4 wt.% with respect to PVA delivered the highest flux performance of 0.86 kg/mh and achieved a separation factor of 116. The PVA-kaolinite composite membrane exhibited pronounced resistance to the ECH-containing feed, demonstrating a sustained flux and separation factor throughout an extended pervaporation stability test lasting 250 h.
制备了一种复合膜,其具有由均匀分散的亲水性高岭土颗粒组成的聚乙烯醇(PVA)选择性层,该选择性层涂覆在聚偏氟乙烯(PVDF)支撑体上。将它们应用于工业上重要的环氧氯丙烷(ECH)/异丙醇(IPA)/水三元混合物的渗透汽化脱水。与原始高岭土(RK)相比,亲水性高岭土(HK)分别通过万能测试、接触角和热重分析(TGA)证实,增强了PVA选择性层的机械性能、亲水性和热稳定性。渗透汽化结果表明,添加HK颗粒显著提高了分离因子(3倍)。在40℃下,对于ECH/IPA/水(50/30/20,/ %),仅观察到通量略有降低。相对于PVA,4 wt.%的HK颗粒浓度实现了0.86 kg/mh的最高通量性能,并达到了116的分离因子。PVA-高岭土复合膜对含ECH的进料表现出显著的耐受性,在持续250小时的长时间渗透汽化稳定性测试中,通量和分离因子保持稳定。