Institute of Water Resources and Engineering, Beijing University of Technology, Beijing 100124, China.
Songliao Water Conservancy Commission, Songliao Basin Water and Soil Conservation Monitoring Center Station, Changchun 130021, China.
Int J Environ Res Public Health. 2023 Jan 19;20(3):1867. doi: 10.3390/ijerph20031867.
Cr(VI) pollution in water bodies is very harmful to human health and the environment. Therefore, it is necessary to remove Cr(VI) from water. In this study, the composite (FP-nZVI) was prepared by loading nano-zero-valent iron (nZVI) onto cellulose filter paper (FP) using a liquid-phase reduction method to improve the dispersibility and oxidation resistance of nZVI. In batch experiments, the effects of iron loading of FP-nZVI, initial concentration of Cr(VI), temperature, and pH on Cr(VI) removal were particularly investigated. The maximum removal rate of 98.6% was achieved at 25 °C, pH = 5, initial concentration of Cr(VI) of 20 mg/L, and FeCl·6HO solution concentration of 0.8 mol/L. The removal of Cr(VI) by FP-nZVI conformed to a pseudo-second-order kinetic model and Langmuir isotherm model. The mechanism of Cr(VI) removal was a multi-step removal mechanism, involving adsorption, reduction, and coprecipitation. Column experiments investigated the effect of flow rate (1 mL/min, 3 mL/min, and 5 mL/min) on Cr(VI) removal. We found that increasing flow rate slightly decreased the removal rate of Cr(VI). The transport of Cr(VI) in composite porous media was simulated using HYDRUS-1D, and the results show that the two-site model can well simulate the reactive transport of Cr(VI). This study may provide a useful reference for the remediation of groundwater contaminated with Cr(VI) or other similar heavy metals using FP-nZVI.
水体中的六价铬污染对人类健康和环境非常有害。因此,有必要从水中去除六价铬。在本研究中,通过液相还原法将纳米零价铁(nZVI)负载到纤维素滤纸(FP)上制备复合材料(FP-nZVI),以提高 nZVI 的分散性和抗氧化性。在批实验中,特别考察了 FP-nZVI 的铁负载量、Cr(VI)的初始浓度、温度和 pH 对 Cr(VI)去除的影响。在 25°C、pH=5、Cr(VI)的初始浓度为 20mg/L 和 FeCl·6HO 溶液浓度为 0.8mol/L 的条件下,Cr(VI)的去除率达到了 98.6%。FP-nZVI 去除 Cr(VI)符合准二级动力学模型和 Langmuir 等温线模型。Cr(VI)去除的机制是多步去除机制,涉及吸附、还原和共沉淀。柱实验研究了流速(1mL/min、3mL/min 和 5mL/min)对 Cr(VI)去除的影响。结果表明,增加流速会略微降低 Cr(VI)的去除率。使用 HYDRUS-1D 模拟了 Cr(VI)在复合多孔介质中的传输,结果表明,双位点模型可以很好地模拟 Cr(VI)的反应传输。本研究可为使用 FP-nZVI 修复地下水污染或其他类似重金属污染提供有益参考。