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Iron oxide nanoparticle synthesis in aqueous and membrane systems for oxidative degradation of trichloroethylene from water

机译:氧化铁纳米粒子合成含水和膜系统中的氧化脱氯乙烯水

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摘要

The potential for using hydroxyl radical (OH) reactions catalyzed by iron oxide nanoparticles (NPs) to remediate toxic organic compounds was investigated. Iron oxide NPs were synthesized by controlled oxidation of iron NPs prior to their use for contaminant oxidation (by H2O2 addition) at near-neutral pH values. Cross-linked polyacrylic acid (PAA) functionalized polyvinylidene fluoride (PVDF) microfiltration membranes were prepared by in situ polymerization of acrylic acid inside the membrane pores. Iron and iron oxide NPs (80–100 nm) were directly synthesized in the polymer matrix of PAA/PVDF membranes, which prevented the agglomeration of particles and controlled the particle size. The conversion of iron to iron oxide in aqueous solution with air oxidation was studied based on X-ray diffraction, Mössbauer spectroscopy and BET surface area test methods. Trichloroethylene (TCE) was selected as the model contaminant because of its environmental importance. Degradations of TCE and H2O2 by NP surface generated OH were investigated. Depending on the ratio of iron and H2O2, TCE conversions as high as 100 % (with about 91 % dechlorination) were obtained. TCE dechlorination was also achieved in real groundwater samples with the reactive membranes.
机译:研究了使用氧化铁纳米颗粒(NPS)催化的羟基自由基(OH )反应以修复毒性有机化合物的可能性。通过在近中性pH值下使用污染物氧化(通过H 2 O 2加成),通过控制铁NPS的控制氧化来合成氧化铁NPS。通过在膜孔内的丙烯酸的原位聚合制备交联聚丙烯酸(PAA)官能化聚偏二氟乙烯(PVDF)微滤膜。在PAA / PVDF膜的聚合物基质中直接合成铁和氧化铁NPS(80-100nm),该PAA / PVDF膜的聚合物基质中可防止颗粒的附聚并控制粒度。基于X射线衍射,Mössbauer光谱和Bet表面积试验方法研究了使用空气氧化水溶液中的铁氧化铁的转化。选择三氯乙烯(TCE)作为其环境重要性,作为模型污染物。通过NP表面产生TCE和H 2 O 2的降解,研究了OH 。取决于铁和H 2 O 2的比例,获得高达100%(具有约91%脱氯)的TCE转化。在具有反应性膜的真实地下水样品中也实现了TCE脱氯。

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