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首页> 外文期刊>The Science of the Total Environment >Enhanced hexavalent chromium removal by activated carbon modified with micro-sized goethite using a facile impregnation method
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Enhanced hexavalent chromium removal by activated carbon modified with micro-sized goethite using a facile impregnation method

机译:轻度浸渍法用微细针铁矿改性的活性炭提高的六价铬去除率

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In this study, activated carbon (AC) was modified with micro-sized geothite (mFeOOH) using a facile and cost-effective impregnation method for enhanced Cr(VI) removal from aqueous solutions. X-ray diffraction (XRD) and scanning electron microscope (SEM) analysis showed that FeOOH particles with a diameter of 0.1-1 mu m were dispersed homogeneously on the surfaces and pores of the AC. Fourier transform infrared spectrum (FTIR) and X-ray photoelectron spectra (XPS) analysis indicated that Cr(VI) was easily adsorbed onto the mFeOOH and reduced to Cr(III) by the AC, eventually deposited as Cr(III)-Fe(III) hydroxides (e.g., (CrxFe1-x) (OH)(3)). Hence, the mFeOOH@AC achieved a significantly higher Cr(VI) removal efficiency of 90.4%, 4.5 times of that the AC. The adsorption of Cr(VI) onto the mFeOOH@AC agreed well with the Langmuir adsorption model, demonstrating that the adsorption process was controlled by monolayer adsorption. This adsorption process also followed the pseudo second-order kinetics and the adsorption rate constant K-2 was determined to be 0.013 g/mg.min. The Cr(VI) removal efficiency decreased with pH values as the adsorption process was highly pH-dependent. After the desorption-adsorption process by 0.1MHCl solution for 4 cycles, the removal efficiency of Cr(VI) was still kept up to 75.1%, indicating that themFeOOH@AC has a good stability and can be easily regenerated. In addition, the mFeOOH@AC also exhibited a promising potential for reutilization since a Cr(VI) removal efficiency of 85.4% was achieved after stripping all the mFeOOH and Cr(III)-Fe(III) hydroxides by 1M HCl solution and regeneration with mFeOOH. We demonstrate that the modified AC with micro-sized goethite can remarkably enhance its ability for Cr(VI) removal in water treatment. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项研究中,活性炭(AC)用一种简便且具有成本效益的浸渍方法,用微米级的方铁矿(mFeOOH)进行了改性,以增强从水溶液中去除Cr(VI)的能力。 X射线衍射(XRD)和扫描电子显微镜(SEM)分析表明,直径为0.1-1μm的FeOOH颗粒均匀地分散在AC的表面和孔上。傅立叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)分析表明,Cr(VI)易于吸附在mFeOOH上并被AC还原为Cr(III),最终沉积为Cr(III)-Fe( III)氢氧化物(例如(CrxFe1-x)(OH)(3))。因此,mFeOOH @ AC的Cr(VI)去除效率明显更高,达到90.4%,是AC的4.5倍。 Cr(VI)在mFeOOH @ AC上的吸附与Langmuir吸附模型非常吻合,表明吸附过程受单层吸附控制。该吸附过程也遵循拟二级动力学,吸附速率常数K-2被确定为0.013 g / mg.min。 Cr(VI)的去除效率随pH值的降低而降低,因为吸附过程高度依赖pH。经过0.1MHCl溶液的解吸-吸附过程4个循环后,Cr(VI)的去除率仍保持在75.1%,表明FeOOH @ AC具有良好的稳定性,易于再生。此外,mFeOOH @ AC还显示出可再利用的潜力,因为在用1M HCl溶液汽提所有的mFeOOH和Cr(III)-Fe(III)氢氧化物并进行再生后,Cr(VI)的去除率为85.4%。 mFeOOH。我们证明,用微细针铁矿改性的AC可以显着提高其在水处理中去除Cr(VI)的能力。 (C)2018 Elsevier B.V.保留所有权利。

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