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Functionalization of flat sheet and hollow fiber microfiltration membranes for water applications

机译:平板和中空纤维微滤膜在水应用中的功能化

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摘要

Functionalized membranes containing nanoparticles provide a novel platform for organic pollutant degradation reactions and for selective removal of contaminants without the drawback of potential nanoparticle loss to the environment. These eco-friendly and sustainable technology approaches allow various water treatment applications through enhanced water transport through the membrane pores. This paper presents “green” techniques to create nanocomposite materials based on sponge-like membranes for water remediation applications involving chlorinated organic compounds. First, hydrophobic hollow fiber microfiltration membranes (HF) of polyvinylidene fluoride were hydrophilized using a water-based green chemistry process with polyvinylpyrrolidone and persulfate. HF and flat sheet membrane pores were then functionalized with poly(acrylic acid) and synthesized Fe/Pd nanoparticles. Surface modifications were determined by contact angle, surface free energy and infrared spectroscopy. The synthesized nanoparticles were characterized by electronic microscopy, X-ray spectrometry and image analysis. Nanoparticle sizes of 193 and 301 nm were obtained for each of the membranes. Depending on the concentration of the dopant (Pd) in the membrane, catalytic activity (established by trichloroethylene (TCE) reduction), was enhanced up to tenfold compared to other reported results. Chloride produced in reduction was close to the stoichiometric 3/1 (Cl/TCE), indicating complete absence of reaction intermediates.
机译:包含纳米颗粒的功能化膜为有机污染物的降解反应和选择性去除污染物提供了一个新颖的平台,而又没有纳米颗粒对环境的潜在损失。这些生态友好且可持续的技术方法通过增强水在膜孔中的传输,允许各种水处理应用。本文介绍了“绿色”技术,该技术可基于海绵状膜创建纳米复合材料,用于涉及氯化有机化合物的水修复应用。首先,聚偏二氟乙烯的疏水性中空纤维微滤膜(HF)使用聚乙烯吡咯烷酮和过硫酸盐通过水基绿色化学方法进行亲水化处理。然后用聚丙烯酸和合成的Fe / Pd纳米粒子对HF和平板膜孔进行功能化。通过接触角,表面自由能和红外光谱确定表面改性。合成的纳米粒子通过电子显微镜,X射线光谱和图像分析进行了表征。对于每个膜,获得193和301nm的纳米颗粒尺寸。与其他报道的结果相比,取决于膜中掺杂剂(Pd)的浓度,催化活性(通过三氯乙烯(TCE)还原建立)提高了十倍。还原产生的氯化物接近化学计量的3/1(Cl - / TCE),表明完全没有反应中间体。

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