改性锂云母浸出渣对水中氟的吸附研究
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东华理工大学 核资源与环境国家重点实验室, 江西 南昌 330013

作者简介:

贺广(1997—),河南商水人,在读硕士研究生,研究方向为水文学及水资源。

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国家自然科学基金项目“固铀矿物变钙铀云母晶体生长机理与调控规律及环境稳定性特征”(42267031)


Study on adsorption of fluorine in water by modified lepidolite leaching residue
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State Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013 , China

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    摘要:

    锂云母作为提锂的重要矿石,在冶炼过程中会产出大量含氟废水及浸出渣,对环境造成严重污染。本文以锂云母浸出渣为基本骨架,通过高温焙烧、硫酸铝溶液浸泡等方式对其进行改性,制备新型除氟材料,通过SEM、TEM、XRD、FTIR对改性后的材料进行形貌和结构分析,采用静态吸附试验研究其除氟性能,并通过吸附动力学和等温吸附线模型研究其吸附机理。结果表明:改性未将锂云母浸出渣中的氟脱离出来,但极大改变了材料的表面形貌,增加了表面的活性位点数量;采用焙烧-硫酸铝溶液浸泡-碱改性制备吸附剂的工艺条件为焙烧温度450℃、焙烧时间2h、硫酸铝溶液浓度(以Al3+计)12g/L,在吸附剂投加量5g/L、反应温度25℃、含氟溶液初始浓度5mg/L的条件下,吸附1min时,除氟率达到91.56%,180min达到吸附平衡,除氟率高达95.12%;吸附剂吸附氟离子过程与Langmuir模型和准二级动力学模型高度拟合,即以单分子层吸附和化学吸附为主。改性锂云母浸出渣对水中氟展现出良好的吸附能力,可有效去除氟污染,且改性过程中渣中氟不会脱离,可以应用至其他高氟地下水的处理。

    Abstract:

    As an important ore for extracting lithium, lepidolite will produce a large amount of fluorine-containing wastewater and leaching residue in the smelting process, which will cause serious pollution to the environment. In this paper, the lemica leaching residue was used as the basic skeleton and modified by high-temperature roasting and aluminum sulfate solution soaking to prepare a new type of defluorination material. The morphology and structure of the modified material were analyzed by SEM, TEM, XRD and FTIR, and its defluorination performance was studied by static adsorption experiment. The adsorption mechanism was studied by adsorption kinetics and isothermal adsorption line model. The results show that the modification does not remove fluorine from the leucite residue, and greatly changes the surface morphology and increases the number of active sites on the surface. Under the conditions of roasting temperature 450℃, roasting time 2h, concentration of aluminum sulfate solution (Al3+) 12g/L, dosage of adsorbent 5g/L, reaction temperature 25℃, initial concentration of fluorine-containing solution 5mg/L, and so on, the RAA adsorbent prepared by roasting-aluminum sulfate solution soaking-alkali modification was prepared for 1min. The defluorination rate reached 91.56%, the adsorption equilibrium was reached in 180min, and the final defluorination rate was up to 95.12%. The adsorption process was highly fit with Langmuir model and quasi-second-order kinetic model, that is, single-molecular layer adsorption and chemisorption were the main processes. The modified lemica leaching residue shows good adsorption capacity for fluorine in water and can effectively remove fluorine pollution, and the fluorine in the slag will not be removed during the modification process, so it can be applied to the treatment of other high fluorine groundwater.

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贺广,柯平超,周义朋,龚慧纯,简鹏.改性锂云母浸出渣对水中氟的吸附研究[J].中国有色冶金,2025,54(2):125-134

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  • 收稿日期:2025-01-30
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  • 在线发布日期: 2025-12-18
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