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仿生珍珠层状羟基磷灰石/壳聚糖复合材料在连续流动废水中有效去除铅离子。

Nacre-inspired hydroxyapatite/chitosan layered composites effectively remove lead ions in continuous-flow wastewater.

机构信息

The Education Ministry Key Lab of Resource Chemistry, Shanghai Key Laboratory of Rare Earth Functional Materials, Shanghai Normal University, Shanghai 200234, China.

School of Materials Science and Engineering, Shanghai Institute of Technology, Shanghai 201418, China.

出版信息

J Hazard Mater. 2020 Mar 15;386:121999. doi: 10.1016/j.jhazmat.2019.121999. Epub 2019 Dec 30.

Abstract

Design and fabrication of novel adsorbents to remove heavy metal ions in continuous-flow wastewater remained a great challenge. Inspired by the hierarchical architecture and biomineralization process of nacre, we firstly constructed hydroxyapatite/chitosan (HA/CH) layered composites. The brick-and-mortar characteristics of HA/CH layered composites improved their flexure strengths up to 3.08 MPa so that the hierarchical architectures could not be destroyed even under high-pressure drop. HA/CH layered composites had the hierarchical microstructures analogous to plate towers, facilitating the separation of adsorbents from water. The interlaminar macropores in the layered composites contributed to the transfer of continuous-flow wastewater. The Pb(II), Cd(II) and Hg(II) ions in wastewater showed similar adsorption trends, and their adsorption amounts arrived at 295.96, 192.37 and 127.38 mg g after 6 days, respectively. Among the above heavy metal ions, the HA/CH layered composites possessed the best Pb(II) adsorption ability due to forming lead hydroxyapatite rods and CH-Pb complexes. The Pb(II) adsorption performances of HA/CH layered composites matched well with Elovich equation, pseudo-first-order and pseudo-second-order kinetics models, revealing the heterogeneous chemisorption mechanism at adsorbent/wastewater interfaces. Therefore, the nacre-like HA/CH layered composites with appropriate mechanical property and excellent adsorption capacity are a novel platform for heavy metal removal in continuous-flow wastewater.

摘要

设计并制造新型吸附剂以去除连续流动废水中的重金属离子仍然是一个巨大的挑战。受珍珠层的分级结构和生物矿化过程的启发,我们首先构建了羟基磷灰石/壳聚糖(HA/CH)层状复合材料。HA/CH 层状复合材料的“砖-泥”结构特征提高了其弯曲强度,达到 3.08 MPa,即使在高压降下,分级结构也不会被破坏。HA/CH 层状复合材料具有类似于板式塔的分级微观结构,有利于吸附剂从水中分离。层状复合材料中的层间大孔有助于连续流动废水的传递。废水中的 Pb(II)、Cd(II)和 Hg(II)离子表现出相似的吸附趋势,经过 6 天,它们的吸附量分别达到 295.96、192.37 和 127.38 mg/g。在上述重金属离子中,由于形成了羟磷灰石棒和 CH-Pb 配合物,HA/CH 层状复合材料对 Pb(II)具有最佳的吸附能力。HA/CH 层状复合材料的 Pb(II)吸附性能与 Elovich 方程、拟一级和拟二级动力学模型吻合较好,揭示了吸附剂/废水界面的非均相化学吸附机制。因此,具有适当机械性能和优异吸附能力的珍珠层状 HA/CH 层状复合材料是去除连续流动废水中重金属的新型平台。

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