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用纳米零价铁(nZVI)改性的水稻秸秆水热炭还原搬迁厂区土壤中的六价铬。

Reduction of Hexavalent Chromium from Soil of the Relocated Factory Area with Rice Straw Hydrothermal Carbon Modified by Nano Zero-Valent Iron (nZVI).

机构信息

Department of Chemistry and Chemical Engineering, Chongqing University of Technology, Chongqing 400054, China.

出版信息

Int J Environ Res Public Health. 2023 Feb 10;20(4):3089. doi: 10.3390/ijerph20043089.

Abstract

In order to reduce the content of Cr(VI) in the soil of the relocated chromium salt factory, the rice straw-derived hydrothermal carbon was prepared by hydrothermal method and loaded with nano zero-valent iron generated by liquid phase reduction, which effectively alleviated the self-aggregation problem of nano zero-valent iron (nZVI) in the treatment of Cr(VI) and improved the Cr(VI) reduction rate without changing the soil structure. The reduction effect of Cr(VI) in soil by key influencing factors such as carbon-iron ratio, initial pH value, and initial temperature was investigated. The results showed that nZVI modified hydro-thermal carbon composite (named RC-nZVI) had a good reduction effect on Cr(VI). Scanning electron microscope (SEM) and energy spectrum analysis showed that nZVI was evenly distributed on the surface of hydrothermal carbon, which effectively reduced the agglomeration of iron. Under the conditions of C/Fe = 1:2, 60 °C, with pH of 2, the average Cr(VI) content in soil decreased from 182.9 mg kg to 21.6 mg kg. Adsorption kinetics of Cr(VI) by RC-nZVI fit well with the pseudo-second-order model, and the kinetic velocity constant revealed that Cr(VI) reduction rate decreased with increasing initial Cr(VI) concentration. Cr(VI) reduction by RC-nZVI was mainly dominated by chemical adsorption.

摘要

为降低铬盐厂搬迁后土壤中 Cr(VI)的含量,采用水热法制备了稻秆衍生的水热碳,并负载液相还原生成的纳米零价铁,有效缓解了纳米零价铁(nZVI)在处理 Cr(VI)时的自团聚问题,同时提高了 Cr(VI)的还原率,而不改变土壤结构。考察了碳铁比、初始 pH 值、初始温度等关键影响因素对土壤中 Cr(VI)的还原效果。结果表明,nZVI 改性水热碳复合材料(命名为 RC-nZVI)对 Cr(VI)具有良好的还原效果。扫描电子显微镜(SEM)和能谱分析表明,nZVI 均匀分布在水热碳表面,有效减少了铁的团聚。在 C/Fe=1:2、60°C、pH 值为 2 的条件下,土壤中平均 Cr(VI)含量从 182.9mg/kg 降低至 21.6mg/kg。RC-nZVI 对 Cr(VI)的吸附动力学较好地符合拟二级动力学模型,动力学速率常数表明 Cr(VI)还原率随初始 Cr(VI)浓度的增加而降低。RC-nZVI 还原 Cr(VI)主要受化学吸附控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44bb/9967011/749c1c0361b3/ijerph-20-03089-g001.jpg

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