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在羟化和羧化富勒烯存在的情况下,氧化铜(II)在氧化多壁碳纳米管上的吸附。

Adsorption of Cu(II) on oxidized multi-walled carbon nanotubes in the presence of hydroxylated and carboxylated fullerenes.

机构信息

Radiochemistry Laboratory, School of Nuclear Science and Technology, Lanzhou University, Lanzhou, PR China.

出版信息

PLoS One. 2013 Aug 29;8(8):e72475. doi: 10.1371/journal.pone.0072475. eCollection 2013.

Abstract

The adsorption of Cu(II) on oxidized multi-walled carbon nanotubes (oMWCNTs) as a function of contact time, pH, ionic strength, temperature, and hydroxylated fullerene (C60(OH)n) and carboxylated fullerene (C60(C(COOH)2)n) were studied under ambient conditions using batch techniques. The results showed that the adsorption of Cu(II) had rapidly reached equilibrium and the kinetic process was well described by a pseudo-second-order rate model. Cu(II) adsorption on oMWCNTs was dependent on pH but independent of ionic strength. Compared with the Freundlich model, the Langmuir model was more suitable for analyzing the adsorption isotherms. The thermodynamic parameters calculated from temperature-dependent adsorption isotherms suggested that Cu(II) adsorption on oMWCNTs was spontaneous and endothermic. The effect of C60(OH)n on Cu(II) adsorption of oMWCNTs was not significant at low C60(OH)n concentration, whereas a negative effect was observed at higher concentration. The adsorption of Cu(II) on oMWCNTs was enhanced with increasing pH values at pH < 5, but decreased at pH ≥ 5. The presence of C60(C(COOH)2)n inhibited the adsorption of Cu(II) onto oMWCNTs at pH 4-6. The double sorption site model was applied to simulate the adsorption isotherms of Cu(II) in the presence of C60(OH)n and fitted the experimental data well.

摘要

在环境条件下,使用批量技术研究了 Cu(II)在氧化多壁碳纳米管(oMWCNTs)上的吸附作为接触时间、pH 值、离子强度、温度、羟基化富勒烯(C60(OH)n)和羧基化富勒烯(C60(C(COOH)2)n)的函数。结果表明,Cu(II)的吸附迅速达到平衡,动力学过程很好地由伪二阶速率模型描述。oMWCNTs 上 Cu(II)的吸附依赖于 pH 值,但与离子强度无关。与 Freundlich 模型相比,Langmuir 模型更适合分析吸附等温线。从温度依赖的吸附等温线上计算出的热力学参数表明,oMWCNTs 上 Cu(II)的吸附是自发和吸热的。在低 C60(OH)n 浓度下,C60(OH)n 对 oMWCNTs 上 Cu(II)吸附的影响不显著,而在较高浓度下则观察到负影响。在 pH < 5 时,随着 pH 值的升高,oMWCNTs 上 Cu(II)的吸附增强,但在 pH ≥ 5 时则降低。C60(C(COOH)2)n 的存在抑制了 pH 值为 4-6 时 Cu(II)在 oMWCNTs 上的吸附。双吸附位模型被应用于模拟 C60(OH)n 存在下 Cu(II)的吸附等温线,并很好地拟合了实验数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3ed/3756995/783f610bbbbb/pone.0072475.g001.jpg

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