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Chemically and Thermally Crosslinked PVA-Based Membranes: Effect on Swelling and Transport Behavior

机译:化学和热交联的基于PVA的膜:对溶胀和运输行为的影响

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摘要

The novel poly(vinyl alcohol) (PVA)-based membranes were prepared using the two-step crosslinking approach: the chemical crosslinking of PVA using sulfosuccinic acid (SSA) (0–50 wt.%) and the thermal treatment (120–160 °C). The membrane composition and crosslinking temperature were optimized in terms of the mechanical and transport properties. The FTIR-ATR analysis revealed that the increase of the SSA concentration and crosslinking temperature resulted in the rise of the ester bond bands intensity due to the esterification reaction between PVA and SSA. As a consequence, the PVA-based membrane with 50 wt % SSA and crosslinked at 140 °C showed the reduced Young’s modulus (from 1266.2 MPa to 1.4 MPa) and elongation at break (from 316% to 66%) in comparison with the pure PVA membrane. The studied swelling behavior of the obtained membranes revealed significantly higher water sorption than that in methanol and propal-2-ol whatever the crosslinking temperature. The performed studies provide a new way of tailoring the membrane physicochemical properties, in particular, the surface hydrophilicity. In addition, the obtained results are crucial for the design and elaboration of the polymer membranes for the pervaporative separation of the liquid-liquid mixtures, in particular, for the alcohol dehydration.
机译:基于两步交联的方法制备了基于新型聚乙烯醇(PVA)的膜:使用磺基琥珀酸(SSA)(0–50 wt。%)进行PVA的化学交联和热处理(120–160) °C)。就机械性能和运输性能而言,优化了膜的组成和交联温度。 FTIR-ATR分析表明,由于PVA和SSA之间的酯化反应,SSA浓度和交联温度的升高导致酯键带强度的增加。结果,与纯硅酸酯相比,具有50 wt%SSA并在140°C交联的PVA基薄膜显示出降低的杨氏模量(从1266.2 MPa降低到1.4 MPa)和断裂伸长率(从316%降低到66%)。 PVA膜。研究所得膜的溶胀行为表明,无论交联温度如何,其吸水率均明显高于甲醇和丙-2-醇。进行的研究提供了一种调整膜物理化学性质,特别是表面亲水性的新方法。另外,所获得的结果对于聚合物膜的设计和制造对于液-液混合物的全蒸发分离,特别是对于醇脱水而言是至关重要的。

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