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Functionalized magnetic nanoparticles: Synthesis characterization catalytic application and assessment of toxicity

机译:功能化磁性纳米颗粒:合成表征催化应用和毒性评估

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摘要

Cost-effective water cleaning approaches using improved treatment technologies, for instance based on catalytic processes with high activity catalysts, are urgently needed. The aim of our study was to synthesize efficient Fenton-like photo-catalysts for rapid degradation of persistent organic micropollutants in aqueous medium. Iron-based nanomaterials were chemically synthesized through simple procedures by immobilization of either iron(II) oxalate (FeO) or iron(III) citrate (FeC) on magnetite (M) nanoparticles stabilized with polyethylene glycol (PEG). Various investigation techniques were performed in order to characterize the freshly prepared catalysts. By applying advanced oxidation processes, the effect of catalyst dosage, hydrogen peroxide concentration and UV-A light exposure were examined for Bisphenol A (BPA) conversion, at laboratory scale, in mild conditions. The obtained results revealed that BPA degradation was rapidly enhanced in the presence of low-concentration H2O2, as well as under UV-A light, and is highly dependent on the surface characteristics of the catalyst. Complete photo-degradation of BPA was achieved over the M/PEG/FeO catalyst in less than 15 minutes. Based on the catalytic performance, a hierarchy of the tested catalysts was established: M/PEG/FeO > M/PEG/FeC > M/PEG. The results of cytotoxicity assay using MCF-7 cells indicated that the aqueous samples after treatment are less cytotoxic.
机译:迫切需要使用改进的处理技术(例如基于具有高活性催化剂的催化工艺)的具有成本效益的水清洗方法。我们的研究目的是合成高效的Fenton样光催化剂,以快速降解水性介质中的持久性有机微量污染物。通过将草酸铁(II)或柠檬酸铁(III)(FeC)固定在用聚乙二醇(PEG)稳定的磁铁矿(M)纳米颗粒上,通过简单的步骤化学合成铁基纳米材料。为了表征新制备的催化剂,进行了各种研究技术。通过应用高级氧化工艺,在温和条件下,在实验室规模下检查了双酚A(BPA)转化率对催化剂用量,过氧化氢浓度和UV-A曝光的影响。所得结果表明,在低浓度H 2 O 2的存在下以及在UV-A光下,BPA的降解迅速增强,并且高度依赖于催化剂的表面特性。在不到15分钟的时间内,在M / PEG / FeO催化剂上实现了BPA的完全光降解。基于催化性能,建立了所测试的催化剂的等级:M / PEG / FeO 3> M / PEG / FeCl 3> M / PEG。使用MCF-7细胞的细胞毒性测定结果表明,处理后的水性样品的细胞毒性较小。

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