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Removal and Oxidation of As(III) from Water Using Iron Oxide Coated CTAB as Adsorbent

机译:使用氧化铁涂层的CTAB作为吸附剂从水中除去和氧化水的氧化和氧化

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摘要

Iron oxides such as magnetite and maghemite coated with cetyltrimethylammonium bromide (CTAB) are very promising materials for wastewater treatment because iron oxide can be easily separated from solutions using the magnetic separation procedure Iron oxide (IO) coated CTAB was synthesized by an adapted co-precipitation method. In the present study, the IO-CTAB was used for removing arsenic from water for the first time. In the present study, the performance of iron oxide coated CTAB biocomposites as an adsorbent for arsenic removal from aqueous solutions was examined. X-ray diffraction (XRD) analysis and the results revealed a cubic phase Fd-3 m of Fe O with lattice a = 8.40 Å and average crystal size equal to 17.26 ± 3 nm. The mean particle size calculated from transmission electron microscopy (TEM) was 19.86 ±1.7 nm. The results of the adsorption batch experiments and the data determined using the Langmuir and Freundlich models emphasized that IO-CTAB nanoparticles were favorable for the adsorption of As(III) ions from aqueous solutions. Ultrasound measurements have shown that IO-CTAB is a cost-effective biocomposite for removing arsenic from contaminated solutions. Moreover, x-ray photoelectron spectroscopy (XPS) has shown that during the process of arsenic absorption, there is oxidation from As(III) to As(V), which leads to a decrease in toxicity during this process. The results of the cytotoxic assays confirmed that the IO-CTAB nanoparticles did not induce any morphological changes in the HeLa cells and did not affect their proliferation after 24 h of incubation.
机译:涂有甲酰基三甲基溴化铵(CTAB)的磁铁矿和磁性氧化铁等铁氧化物是废水处理的非常有前途的材料,因为氧化铁可以使用磁性分离过程容易地将氧化铁(IO)涂覆的CTAB通过适应的共沉淀合成氧化铁(IO)涂覆的CTAB方法。在本研究中,IO-CTAB首次用于从水中除去砷。在本研究中,检查了氧化铁涂层的CTAB生物复合材料作为吸附剂的吸附剂,用于从水溶液中除去水溶液。 X射线衍射(XRD)分析和结果显示了具有晶格A = 8.40的Fe O的立方相FD-3M,平均晶体尺寸等于17.26±3nm。由透射电子显微镜(TEM)计算的平均粒度为19.86±1.7nm。使用Langmuir和Freundlich模型测定的吸附批次实验的结果强调,IO-CTAB纳米粒子有利于吸附来自水溶液的(III)离子。超声测量表明,IO-CTAB是一种经济高效的生物复合材料,用于从受污染的溶液中除去砷。此外,X射线光电子体光谱(XPS)表明,在砷吸收过程中,从AS(III)氧化至AS(V),这导致该过程中的毒性降低。细胞毒性测定的结果证实,IO-CTAB纳米颗粒在Hela细胞中没有诱导任何形态变化,并且在孵育24小时后不会影响它们的增殖。

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