首页> 外文期刊>Journal of Hazardous Materials >Selective removal of anionic dyes with exceptionally high adsorption capacity and removal of dichromate (Cr_2O_7~(2-)) anion using Ni-Co-S/CTAB nanocomposites and its adsorption mechanism
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Selective removal of anionic dyes with exceptionally high adsorption capacity and removal of dichromate (Cr_2O_7~(2-)) anion using Ni-Co-S/CTAB nanocomposites and its adsorption mechanism

机译:Ni-Co-S / CTAB纳米复合材料选择性去除具有极高吸附能力的阴离子染料和重铬酸根(Cr_2O_7〜(2-))阴离子及其吸附机理

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摘要

An adsorbent Ni-Co-S/CTAB nanocomposites have been synthesized at low temperature in aqueous medium using nickel acetate, cobalt acetate, thioacetamide and hexadecyltrimethyl ammonium bromide (CTAB) as reagents. The nanocomposites exhibited exceptionally high adsorption capacity towards anionic adsorbates with high selectivity. The maximum adsorption capacity of nanocomposites were 1995.02 mg g(-1) for Congo red (CR), 2223.15 mg g(-1) for Methyl orange (MO) anionic dyes and 790.69 mg g(-1) for Cr2O72- metal anion. They exhibit negligible adsorption ability towards cationic dyes 2.33 mg g(-1) for MB and 42.05 mg g(-1) for RhB. The nanocomposite is able to adsorb anionic dyes from a binary mixture of cationic and anionic dyes with high separation factor. It also shows good results with synthetic effluents. The removal of adsorbates followed modified Zhu and Gu isotherm model. FTIR and Zeta-potential measurement confirmed that electrostatic interactions are predominating factor for the adsorption of anionic adsorbates followed by hydrophobic interactions between adsorbates. Moreover, ethanol is used to regenerate the adsorbent and reused up to five times with good adsorption capacities. Thus, the nanocomposite can be used as an efficient adsorbent for the removal and seperation of anionic adsorbates from binary mixtures as well as synthetic effluents.
机译:吸附剂Ni-Co-S / CTAB纳米复合材料是在低温下在水性介质中以乙酸镍,乙酸钴,硫代乙酰胺和十六烷基三甲基溴化铵(CTAB)为试剂合成的。纳米复合材料对阴离子吸附物表现出异常高的吸附能力,且选择性高。纳米复合材料的最大吸附容量为刚果红(CR)为1995.02 mg g(-1),甲基橙(MO)阴离子染料为2223.15 mg g(-1)和Cr2O72-金属阴离子为790.69 mg g(-1)。它们对MB的阳离子染料显示的吸附能力微不足道,对于MB为2.33 mg g(-1),对于RhB对42.05 mg g(-1)。纳米复合材料能够从阳离子和阴离子染料的二元混合物中以高分离系数吸附阴离子染料。合成废水也显示出良好的效果。吸附物的去除遵循改进的Zhu and Gu等温模型。 FTIR和Zeta电位测量证实,静电相互作用是阴离子吸附质吸附的主要因素,随后是吸附质之间的疏水相互作用。而且,乙醇用于再生吸附剂,并以良好的吸附能力重复使用多达五次。因此,该纳米复合材料可用作从二元混合物以及合成废水中去除和分离阴离子吸附物的有效吸附剂。

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