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Synthesis and Characterization of Polysulfone (PSU)/Philippine Halloysite (PH-HAL) Nanostructured Membrane via Electrospinning

机译:通过电刺刺激的聚砜(PSU)/菲律宾矿物质(PH-HAL)纳米结构膜的合成与表征

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摘要

Membrane technology is widely used in many separation processes because of its multi-disciplinary characteristics. One of the techniques that is used in the fabrication of membranes is the electrospinning process which can create nanofibers from a very wide range of polymeric materials. In this study, electrospun nanostructured fibrous composite membranes of polysulfone (PSU), commercial halloysite (COM-HAL), and Philippine halloysite (PH-HAL) were synthesized. The concentrations of COM-HAL and PH-HAL were both varied from 0.5%, 1%, and 2%. The FTIR results showed that there were changes in the intensity of the PSU-IR spectra which confirmed the presence of COM-HAL and PH-HAL in the synthesized membranes. The SEM revealed that nanofibers can be successfully produced by the addition of LiCl salt in PSU with varying HAL concentrations. Also, it was observed that the addition of HAL with varying concentrations have no significant effect on wettability due to the strong hydrophobic character of the PSU membrane. Moreover, it was found from the analysis of mechanical properties that the tensile strength of the membranes weakened by the addition of HAL due to its weak interaction with PSU.
机译:由于其多学科特征,膜技术广泛应用于许多分离过程。用于制造膜的技术之一是静电纺丝过程,其可以从非常宽的聚合物材料产生纳米纤维。在该研究中,合成了聚砜(PSU),商业霍罗铁矿(COM-HAL)和菲律宾博物矿(PH-HAL)的电纺纳米结构纤维复合膜。 COM-HAL和pH-HAL的浓度均为0.5%,1%和2%。 FTIR结果表明,PSU-IR光谱的强度变化,证实了合成膜中的COM-HAL和pH-HAL的存在。 SEM显示通过在PSU中加入具有不同的HAL浓度,可以通过加入LiCl盐成功生产纳米纤维。而且,观察到具有不同浓度的HAL对由于PSU膜的强疏水性特性而对润湿性没有显着影响。此外,它发现了从机械性能的分析中发现,由于其与PSU的弱相互作用,膜的拉伸强度削弱了膜的抗拉强度。

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