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    金属氧化物纳米材料在水环境氟离子去除中的应用进展

    Progress in the application of metal oxide nanomaterials to remove fluoride ions in aqueous environment

    • 摘要: 地下水容易受到工业化学品、农药以及某些矿物质(如含氟矿物)的污染。其中,氟离子(F)是地下水中常见的污染物之一,其浓度过量可能对水质和人体健康造成危害。世界卫生组织建议饮用水中氟化物的最大允许浓度为1.5 mg·L−1,而我国《生活饮用水卫生标准》(GB 5749—2022)规定其浓度不能超过1.0 mg·L−1。因此,开发有效的F去除方法显得尤为重要。吸附法因其操作简便、成本低廉、环境友好以及对低浓度F的高效去除能力,近年来在水环境除氟研究中受到广泛关注。过渡金属氧化物纳米材料凭借其优良的吸附性、高安全性、低水溶性和强解吸能力,成为去除水环境中F极具潜力的新材料。文章对当前水环境除氟技术进行了简要概述,系统总结了金属氧化物纳米材料在吸附除氟技术中的应用研究进展,并对未来设计和合成具有更高吸附性和选择性的金属氧化物纳米材料进行了展望。

       

      Abstract: Groundwater is susceptible to contamination by industrial chemicals, pesticides, and certain minerals, such as fluorinated minerals. Fluorine ion (F) is one of the common pollutants in groundwater, and its excessive concentration may cause harm to water quality and human health. The World Health Organization recommends that the maximum allowable concentration of F in drinking water is 1.5 mg·L−1, and China’s Sanitary Standard for Drinking Water (GB5749–2022) stipulates that the concentration cannot exceed 1.0 mg·L−1. Therefore, it is extremely necessary to develop effective methods to remove F from water environment. The adsorption method has the advantages of simple operation, low cost, friendly environment and good effect on the removal of low F concentration. In recent years, the removal of F in water environment has been widely concerned. Transition metal oxide nanomaterials are promising new materials for removing F from aqueous environment due to their good adsorption, high safety, low water solubility and strong desorption ability. In this paper, the current technology of defluorination in water environment is briefly reviewed, and the application of metal oxide nanomaterials in adsorptive defluorination technology is systematically summarized. At the same time, the design and synthesis of metal oxide nanomaterials with higher adsorbability and selectivity are prospected.

       

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