首页> 外文期刊>Journal of Hazardous Materials >Green synthesis of a magnetic hybrid adsorbent (CoFe2O4/NOM): Removal of chromium from industrial effluent and evaluation of the catalytic potential of recovered chromium ions
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Green synthesis of a magnetic hybrid adsorbent (CoFe2O4/NOM): Removal of chromium from industrial effluent and evaluation of the catalytic potential of recovered chromium ions

机译:磁性杂化吸附剂(CoFe2O4 / NOM)的绿色合成:从工业废水中去除铬并评估回收的铬离子的催化潜力

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摘要

This work describes the removal of chromium ions from industrial effluent using a hybrid magnetic adsorbent, CoFe2O4/NOM, synthesized using water rich in natural organic matter. The hybrid obtained at ambient temperature (HbAmb) was calcined at 200, 400, and 800 degrees C for 2 h, and formation of the cobalt ferrite phase was confirmed by XRD, which indicated the presence of NOM in the structure of the material. Removal tests showed that HbAmb provided efficient removal of chromium at the natural pH of the effluent, while the other materials were effective at pH 6. Evaluation of the kinetics showed excellent performance of the process, with 70-87% removal in 20 min, which provided a high degree of flexibility. The hybrid showed high removal during five reuse cycles, ranging from 96% in the first cycle to 82% in the final. The matrices containing the saturated adsorbent (HbAmb_Sat) and recovered chromium ions (CrD) showed high performance in the catalytic reduction of 4-nitrophenol, with conversion rates of 99.9% in short periods of time, as well as excellent potential for reuse in three cycles. The results demonstrated that the production of a technological material and its use for remediation could be achieved in an ecologically sustainable manner. (C) 2017 Elsevier B.V. All rights reserved.
机译:这项工作描述了使用混合磁性吸附剂CoFe2O4 / NOM从工业废水中去除铬离子的方法,该混合吸附剂是使用富含天然有机物的水合成的。将在室温(HbAmb)下获得的杂化体在200、400和800摄氏度下煅烧2 h,并通过XRD证实形成了铁素体钴相,这表明该材料结构中存在NOM。去除测试表明,HbAmb在废水的自然pH下可有效去除铬,而其他材料在pH为6时有效。动力学评估表明该工艺具有出色的性能,在20分钟内可去除70-87%。提供了高度的灵活性。杂种在五个重复使用周期中显示出较高的去除率,范围从第一个周期的96%到最后一个周期的82%。含有饱和吸附剂(HbAmb_Sat)和回收的铬离子(CrD)的基质在4-硝基苯酚的催化还原方面表现出很高的性能,在短时间内的转化率为99.9%,并且在三个循环中具有极好的再利用潜力。结果表明,可以以生态可持续的方式实现技术材料的生产及其用于补救。 (C)2017 Elsevier B.V.保留所有权利。

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