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一种新型阿仑膦酸盐掺杂 HAP 纳米材料,用于 Pb、Cu 和 Cd 的吸附效果。

A new alendronate doped HAP nanomaterial for Pb, Cu and Cd effect absorption.

机构信息

School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China.

School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China.

出版信息

J Hazard Mater. 2020 Dec 5;400:123143. doi: 10.1016/j.jhazmat.2020.123143. Epub 2020 Jun 10.

Abstract

In this paper, a new nanobiomaterial, alendronate hydroxyapatite (AL-HAP), was synthesized by the conventional co-precipitation method with alendronate (AL) as dopant, and applied in the removal of heavy metal contaminants for the first time. The characterization results showed that the crystallinity of the AL-HAP nanocomposite biomaterials after doping has been greatly deteriorated, and the pore volume and pore size increased. When the doping amount of AL was 10 %, the maximum adsorption capacity of AL-HAP for Pb, Cd and Cu can reach 1431.8, 469 and 226.6 mg/g, respectively, which was much higher than that reported in other literature. Meanwhile, the adsorption mechanism of AL-HAP for heavy metal ions was discussed from both the views of experimental and Multiwfn program theoretical calculation based on density functional theory (DFT). Quantitative molecular surface analysis was carried out for the first time to study the minimum points and the positions of electrostatic potential (ESP) and average local ionization energy(ALIE), as well as the exact values, giving more accurate and reliable analysis conclusions for the reaction sites and binding mode. In addition, the independent gradient model (IGM) method was also firstly applied to investigate the interactions between AL and HAP or AL-HAP nanocomposite with metal ions. AL-HAP is a potential adsorption material for heavy metal wastewater treatment and soil remediation because of its advantages such as convenient synthesis, excellent adsorption performance and no secondary pollution.

摘要

本文采用传统共沉淀法合成了一种新型纳米生物材料——阿仑膦酸钠羟基磷灰石(AL-HAP),并首次将其应用于重金属污染物的去除。表征结果表明,掺杂后 AL-HAP 纳米复合材料的结晶度大大恶化,孔体积和孔径增大。当 AL 的掺杂量为 10%时,AL-HAP 对 Pb、Cd 和 Cu 的最大吸附容量分别可达 1431.8、469 和 226.6 mg/g,远高于其他文献报道。同时,从实验和基于密度泛函理论(DFT)的 Multiwfn 程序理论计算两个角度探讨了 AL-HAP 对重金属离子的吸附机制。首次进行了定量分子表面分析,研究了静电势(ESP)和平均局域电离能(ALIE)的最小点和位置,以及确切值,为反应位点和结合模式提供了更准确、可靠的分析结论。此外,还首次应用独立梯度模型(IGM)方法研究了 AL 与 HAP 或 AL-HAP 纳米复合材料与金属离子之间的相互作用。由于其合成方便、吸附性能优异、无二次污染等优点,AL-HAP 是一种有潜力的重金属废水处理和土壤修复吸附材料。

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