Ahmad Muhammad, Qaiser Asif Ali, Huda Noor Ul, Saeed Anem
Department of Polymer and Process Engineering, University of Engineering and Technology Lahore 54890 Pakistan
RSC Adv. 2020 Jan 16;10(6):3029-3039. doi: 10.1039/c9ra06178a.
In this research, novel heterogeneous cation exchange membranes based on thermoplastic polyurethane (TPU) have been prepared by the solution casting technique. The effects of incorporation level of sulfonated polystyrene divinyl-benzene (PSS/DVB) resin on water uptake, ion exchange capacity, membrane potential and salt extraction have been elucidated. Morphological and water uptake studies suggested a two-phase heterogeneous membrane morphology owing to the presence of hard and soft segments in the TPU backbone and swelling of PSS/DVB particles. This morphology was shifted to a semi-gelled morphology throughout the membrane bulk when resin loading exceeded 50 wt%. The physically cross-linked hard segments in the TPU backbone ensured a compact membrane morphology and prevented the formation of water channels. The membrane potential showed that increasing the resin content increased the membrane transport number (max. 0.95) up to 50 wt% resin loading and beyond this, the transport number started decreasing showing a pronounced effect of voids and water flow channels developing on excessive swelling. The permselectivity reached a maximum (up to 0.92) and salt extraction values also increased (by varying voltage) up to 50 wt% loading and started decreasing beyond this optimum content. This study shows successful development of low-cost heterogeneous cation exchange membranes based on TPU with acceptable electrochemical properties.
在本研究中,通过溶液浇铸技术制备了基于热塑性聚氨酯(TPU)的新型非均相阳离子交换膜。阐明了磺化聚苯乙烯二乙烯基苯(PSS/DVB)树脂掺入量对吸水率、离子交换容量、膜电位和盐提取的影响。形态学和吸水率研究表明,由于TPU主链中存在硬段和软段以及PSS/DVB颗粒的溶胀,形成了两相非均相膜形态。当树脂负载量超过50 wt%时,这种形态在整个膜体中转变为半凝胶形态。TPU主链中物理交联的硬段确保了致密的膜形态,并防止了水通道的形成。膜电位表明,增加树脂含量会使膜迁移数增加(最大0.95),直至树脂负载量达到50 wt%,超过此值后,迁移数开始下降,这表明过度溶胀时形成的空隙和水流通道产生了显著影响。选择性渗透率达到最大值(高达0.92),盐提取值也随着电压变化在负载量达到50 wt%时增加,超过此最佳含量后开始下降。本研究表明成功开发了基于TPU的低成本非均相阳离子交换膜,其具有可接受的电化学性能。