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首页> 外文期刊>ACS Omega >Adsorption Separation of Cr(VI) from a Water Phase Using Multiwalled Carbon Nanotube-Immobilized Ionic Liquids
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Adsorption Separation of Cr(VI) from a Water Phase Using Multiwalled Carbon Nanotube-Immobilized Ionic Liquids

机译:使用多壁纳米管固定离子液体对水相的Cr(VI)的吸附分离

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Three types of multiwalled carbon nanotubes (MWCNTs, MWCNTs-OH, and MWCNTs-COOH) were used as carriers and five types of ionic liquids (ILs) were immobilized on each carrier by an impregnation method. Boehm titration, Fourier-transform infrared spectroscopy, X-ray photoelectron spectroscopy, specific surface area analysis by the Brunauer–Emmett–Teller method, and thermogravimetric analysis were performed to investigate [C4mim]HSO_(4) adsorption by the MWCNTs. The MWCNT-immobilized IL was used for Cr(VI) removal from a water phase. The adsorption properties of MWCNTs-COOH-immobilized [C4mim]HSO_(4) were investigated by single-factor analysis. The results showed that the Cr(VI) removal rate was 52.14% and the adsorption capacity was 31.29 mg/g. The optimum adsorption conditions were as follows: initial Cr(VI) concentration, 60 mg/L; adsorbent dosage, 50 mg; pH 2.0; adsorption temperature 40 °C; and adsorption time, 200 min. Adsorption isotherm data fitted the Freundlich model, which indicates that the adsorption process was in line with the multimolecular layer adsorption theory. The Cr(VI) adsorption behaviors of the three adsorbents were consistent with a pseudo-second-order dynamic model. Thermodynamic analysis of the reaction systems was also performed. The Cr(VI) removal rates of MWCNTs-3, MWCNTs-OH-3, and MWCNTs-COOH-3 were 27.97, 9.39, and 7.34% lower than the initial removal rates after five cycles.
机译:使用三种类型的多壁碳纳米管(MWCNT,MWCNTS-OH和MWCNTS-COOH)作为载体,并通过浸渍方法将五种类型的离子液体(ILS)固定在每个载体上。 Boehm滴定,傅立叶变换红外光谱,X射线光电子能谱,通过Brunauer-Emmett-Teller方法进行比例分析,并进行热重分析,以研究MWCNTS的[C4mim] HSO_(4)吸附。 MWCNT固定化IL用于从水相中除去Cr(VI)。通过单因素分析研究了MWCNTS-COOH-固定化的吸附性能[C4mim] HSO_(4)。结果表明,Cr(VI)去除率为52.14%,吸附能力为31.29mg / g。最佳吸附条件如下:初始Cr(vi)浓度,60 mg / L;吸附剂剂量,50毫克; pH 2.0;吸附温度40°C;和吸附时间,200分钟。吸附等温数据适用于Freundlich模型,表明吸附过程符合多分子层吸附理论。三种吸附剂的Cr(VI)吸附行为与伪二阶动态模型一致。还进行了反应系统的热力学分析。 MWCNTS-3,MWCNTS-OH-3和MWCNTS-CoOH-3的Cr(VI)去除率为27.97,9.39和比五个循环后初始除去速率低7.34%。

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