Peng Mingming, You Deng, Jin Zhennan, Ni Chenquan, Shi Hui, Shao Jiachuang, Shi Xuanyu, Zhou Lei, Shao Penghui, Yang Liming, Luo Xubiao
Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle, Nanchang Hangkong University, Nanchang, 330063, PR China.
Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle, Nanchang Hangkong University, Nanchang, 330063, PR China.
Environ Res. 2023 Nov 1;236(Pt 1):116752. doi: 10.1016/j.envres.2023.116752. Epub 2023 Jul 30.
Antimony contamination of tailings from the mining process remain attracted a great amount of concern. In this study, defective UiO-66-X crystal materials are rationally constructed using trifluoroacetic acid and hydrochloric acid as modulators for the removal of Sb(V) from actual tailing sand leachates. XRD and TG characterizations reveal that the number and kind of defects in UiO-66 are influenced by the type of modulators and the addition of trifluoroacetic acid makes UiO-66-TFA contain both cluster and ligand defects. Adsorption experiments show that UiO-66 and UiO-66-HCl achieve 100% removal of Sb(V) at pH 7.5 of the tailing sand leachate, and up to 90% removal of Sb(V) by the three materials at pH 2.5. It is noteworthy that the removal rate of Sb(V) by UiO-66-HCl is still satisfactory even under strongly acidic conditions at pH 0.5, with good potential for practical applications. Four kinetic models are used to fit the adsorption data and the analysis shows that the mechanism of Sb(V) adsorption by three adsorbent is all pseudo-second order and chemisorption acts as an important role in the adsorption process. In addition, the fixed bed adsorption experiments show that the material exhibit good prospects for practical applications.
采矿过程中尾矿的锑污染一直备受关注。在本研究中,以三氟乙酸和盐酸为调节剂,合理构建了缺陷型UiO-66-X晶体材料,用于去除实际尾矿砂浸出液中的Sb(V)。XRD和TG表征表明,UiO-66中缺陷的数量和种类受调节剂类型的影响,三氟乙酸的加入使UiO-66-TFA同时含有簇缺陷和配体缺陷。吸附实验表明,在尾矿砂浸出液pH为7.5时,UiO-66和UiO-66-HCl对Sb(V)的去除率达到100%,在pH为2.5时,三种材料对Sb(V)的去除率高达90%。值得注意的是,即使在pH为0.5的强酸性条件下,UiO-66-HCl对Sb(V)的去除率仍令人满意,具有良好的实际应用潜力。采用四种动力学模型对吸附数据进行拟合,分析表明三种吸附剂对Sb(V)的吸附机理均为拟二级反应,化学吸附在吸附过程中起重要作用。此外,固定床吸附实验表明该材料具有良好的实际应用前景。