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源自棉秆的磁性生物炭用于去除水溶液中Cr(VI)的合成

Synthesis of magnetic biochar derived from cotton stalks for the removal of Cr(VI) from aqueous solution.

作者信息

Ma Fengfeng, Zhao Baowei, Diao Jingru

机构信息

School of Environmental and Municipal Engineering, Lanzhou Jiaotong University, Lanzhou 730070, Gansu, China E-mail:

出版信息

Water Sci Technol. 2019 Jun;79(11):2106-2115. doi: 10.2166/wst.2019.208.

Abstract

A magnetic cotton stalk biochar (MCSBC) was synthesized through chemical co-precipitation, based on cotton stalk biochar (CSBC). The MCSBC and CSBC were characterized by scanning electron microscopy, Fourier transform infrared spectroscopy, X-ray diffraction, X-ray photoelectron spectroscopy and vibrating sample magnetometry. The characterization analyses showed that the magnetization process endowed the CSBC with excellent magnetic properties with a superparamagnetic magnetization of 27.59 emu/g. Batch adsorption experiment results indicated that the Cr(VI) maximum adsorption capacity of MCSBC was 20.05 mg/g, which was higher than that of CSBC (18.77 mg/g). The adsorption kinetic data were well fitted by the pseudo-second-order model and the adsorption isotherms were well represented by the Sips isotherm model. The thermodynamic studies indicated that the adsorption process was spontaneous and endothermic, and the entropy increased. The potential adsorption mechanism was the electrostatic adsorption of anionic Cr(VI) to the positively charged MCSBC surface, the reduction of Cr(VI) into Cr(III) and the complexation of Cr(III) by oxygen-containing functional groups of MCSBC. The regeneration studies showed that MCSBC kept 80% of its initial Cr(VI) adsorption capacity in the cycle. All the findings suggest that this novel magnetic biochar could be used in the field of Cr(VI)-containing wastewater treatment.

摘要

以棉秆生物炭(CSBC)为基础,通过化学共沉淀法合成了磁性棉秆生物炭(MCSBC)。采用扫描电子显微镜、傅里叶变换红外光谱、X射线衍射、X射线光电子能谱和振动样品磁强计对MCSBC和CSBC进行了表征。表征分析表明,磁化过程赋予了CSBC优异的磁性,其超顺磁磁化强度为27.59 emu/g。批量吸附实验结果表明,MCSBC对Cr(VI)的最大吸附容量为20.05 mg/g,高于CSBC(18.77 mg/g)。吸附动力学数据很好地符合准二级模型,吸附等温线很好地由Sips等温线模型表示。热力学研究表明,吸附过程是自发的且吸热的,熵增加。潜在的吸附机制是阴离子Cr(VI)对带正电的MCSBC表面的静电吸附、Cr(VI)还原为Cr(III)以及Cr(III)与MCSBC的含氧官能团络合。再生研究表明,MCSBC在循环中保持了其初始Cr(VI)吸附容量的80%。所有这些发现表明,这种新型磁性生物炭可用于含Cr(VI)废水处理领域。

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