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介孔陶瓷功能纳米材料对水中Cd(II)的吸附

Adsorption of Cd(II) in water by mesoporous ceramic functional nanomaterials.

作者信息

Xue Zhongjun, Liu Na, Hu Hongxiang, Huang Jieying, Kalkhajeh Yusef Kianpoor, Wu Xiuyuan, Xu Nian, Fu Xiaofei, Zhan Linchuan

机构信息

School of Resources and Environment, Anhui Agricultural University, 230036 Hefei, People's Republic of China.

Anhui Province Key Laboratory of Farmland Ecological Conservation and Pollution Prevention, 230036 Hefei, People's Republic of China.

出版信息

R Soc Open Sci. 2019 Apr 17;6(4):182195. doi: 10.1098/rsos.182195. eCollection 2019 Apr.

Abstract

Mesoporous ceramic functional nanomaterials (MCFN) is a self-assembled environmental adsorbent with a monolayer molecular which is widely used in the treatment of industrial wastewater and contaminated soil. This work aimed to study the relationship between the adsorption behaviour of Cd(II) by MCFN and contact time, initial concentration, MCFN dosage, pH, oscillation rate and temperature through a batch adsorption method. The adsorption kinetic and isotherm behaviours were well described by the pseudo-second-order and Langmuir models. The batch characterization technique revealed that MCFN had several oxygen-containing functional groups. Using Langmuir model, the maximum adsorption capacity of MCFN for Cd(II) was 97.09 mg g at pH 6, 25°C, dosage of 0.2 g and contact time of 180 min. Thermodynamic study indicated that the present adsorption process was feasible, spontaneous and exothermic at the temperature range of 25-55°C. The results of this study provide an important enlightenment for Cd removal or preconcentration of porous ceramic nanomaterial adsorbents for environmental applications.

摘要

介孔陶瓷功能纳米材料(MCFN)是一种具有单层分子的自组装环境吸附剂,广泛应用于工业废水处理和污染土壤修复。本研究旨在通过批量吸附法研究MCFN对Cd(II)的吸附行为与接触时间、初始浓度、MCFN用量、pH值、振荡速率和温度之间的关系。吸附动力学和等温线行为分别用准二级模型和朗缪尔模型进行了很好的描述。批量表征技术表明,MCFN含有多个含氧官能团。利用朗缪尔模型,在pH值为6、温度为25°C、用量为0.2 g、接触时间为180 min的条件下,MCFN对Cd(II)的最大吸附容量为97.09 mg/g。热力学研究表明,在25-55°C的温度范围内,当前的吸附过程是可行的、自发的且放热的。本研究结果为多孔陶瓷纳米材料吸附剂在环境应用中去除或预富集Cd提供了重要启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f51/6502379/9d590dd3b5e6/rsos182195-g1.jpg

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