School of Resources and Environmental Engineering, Wuhan University of Technology, 122 Luoshi Road, Wuhan, 430070, PR China.
School of Resources and Environmental Engineering, Wuhan University of Technology, 122 Luoshi Road, Wuhan, 430070, PR China.
Chemosphere. 2022 Feb;289:133164. doi: 10.1016/j.chemosphere.2021.133164. Epub 2021 Dec 4.
A nanocomposite of a zirconium-based metal-organic framework (UiO-66) @ polypyrrole (PPy) (UiO-66@PPy) was successfully synthesized to eliminate F from groundwater. The optimum initial pH and adsorbent dose for maximum uptake of F from aqueous solution were found to be 3.0 and 0.1 g/L, respectively. The fluoride removal performance of UiO-66 was greatly enhanced through the introduction of polypyrrole guests, and the maximum adsorption capacity of UiO-66@PPy, namely, 290.7 mg/g, was reached, which is far superior to those of other previously reported adsorbents. The fluoride adsorption by UiO-66@PPy agreed well with the pseudo-second-order equation model and Langmuir isotherm model. The coexisting PO and CO substantially influence fluoride removal. The synthesized UiO-66@PPy could be reused five times in adsorption-desorption cycles. The incorporation of conducting polymers opened additional paths for the development of adsorbent materials; thus, UiO-66@PPy could be a viable adsorbent material and contribute to fluoride removal from groundwater.
一种锆基金属有机骨架(UiO-66)@聚吡咯(PPy)(UiO-66@PPy)的纳米复合材料被成功合成,用于从地下水中去除氟。研究发现,从水溶液中最大程度地去除氟的最佳初始 pH 值和吸附剂剂量分别为 3.0 和 0.1 g/L。通过引入聚吡咯客体,大大增强了 UiO-66 的氟去除性能,UiO-66@PPy 的最大吸附容量达到 290.7 mg/g,远远超过其他先前报道的吸附剂。UiO-66@PPy 的氟吸附符合准二级方程模型和 Langmuir 等温线模型。共存的 PO 和 CO 对氟的去除有很大的影响。合成的 UiO-66@PPy 在吸附-解吸循环中可重复使用五次。导电聚合物的引入为开发吸附剂材料开辟了新途径;因此,UiO-66@PPy 可能是一种可行的吸附剂材料,有助于从地下水中去除氟。