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钙铝层状双氢氧化物和聚吡咯修饰产物的合成及其对高浓度六价铬废水的高效去除。

Synthesis of calcium-aluminum-layered double hydroxide and a polypyrrole decorated product for efficient removal of high concentrations of aqueous hexavalent chromium.

机构信息

School of Water Conservancy and Environment, University of Jinan, Jinan 250022, PR China.

Longkou Branch of Yantai Municipal Bureau of Ecology and Environment, Shandong Province, Longkou 265701, PR China.

出版信息

J Colloid Interface Sci. 2022 Feb;607(Pt 2):1963-1972. doi: 10.1016/j.jcis.2021.10.014. Epub 2021 Oct 6.

Abstract

To efficiently remove high concentrations of hexavalent chromium (Cr(VI)), calcium-aluminum-layered double hydroxide (CaAl-LDH, denoted as CAL), and polypyrrole-modified CAL (CAL-PPy) were prepared by hydrothermal and in situ polymerization methods, respectively. The chemical structure, morphology, and elemental results indicated that the chain-like polypyrrole was decorated with hexagonal CAL. The specific surface area of CAL-PPy increased from 8.746 m/g to 24.24 m/g. The adsorption performances of CAL and CAL-PPy for aqueous Cr(VI) were investigated using batch equilibrium experiments. The decontamination process of aqueous Cr(VI) (100 mg/L) reached the equilibrium state within 50 min, and the kinetic data met the pseudo-second-order kinetic equation. The Langmuir model described the isothermal data properly, and the obtained theoretical adsorption capacity of CAL for Cr(VI) at 318 K was 34.06 mg/g, while that of CAL-PPy was 66.14 mg/g. The removal mechanisms involved electrostatic attraction, surface complexation, anion exchange, and reduction to low-toxicity Cr(III). Therefore, CAL and CAL-PPy have underlying applications in treating real wastewater containing Cr(VI).

摘要

为了高效去除高浓度六价铬(Cr(VI)),分别采用水热法和原位聚合法制备了钙铝层状双氢氧化物(CaAl-LDH,记为 CAL)和聚吡咯修饰的 CAL(CAL-PPy)。化学结构、形貌和元素分析结果表明,链状聚吡咯修饰在六边形 CAL 上。CAL-PPy 的比表面积从 8.746 m/g 增加到 24.24 m/g。采用批量平衡实验研究了 CAL 和 CAL-PPy 对水溶液中 Cr(VI)的吸附性能。去除水溶液中 100 mg/L Cr(VI)的过程在 50 min 内达到平衡状态,动力学数据符合准二级动力学方程。Langmuir 模型很好地描述了等温数据,CAL 在 318 K 下对 Cr(VI)的理论吸附容量为 34.06 mg/g,而 CAL-PPy 的为 66.14 mg/g。去除机制包括静电吸引、表面络合、阴离子交换和还原为低毒性 Cr(III)。因此,CAL 和 CAL-PPy 在处理含 Cr(VI)的实际废水方面具有潜在的应用价值。

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