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碳纳米管的解吸与再吸附:氢氧化钠与微波辐照工艺的比较

Desorption and re-adsorption of carbon nanotubes: comparisons of sodium hydroxide and microwave irradiation processes.

作者信息

Kuo Chao-Yin

机构信息

Department of Safety Health and Environmental Engineering, National Yunlin University of Science and Technology, 123, Sec. 3, University Road, Douliu, Yunlin, Taiwan.

出版信息

J Hazard Mater. 2008 Apr 15;152(3):949-54. doi: 10.1016/j.jhazmat.2007.07.069. Epub 2007 Jul 27.

Abstract

This study evaluates exhausted carbon nanotubes regenerated by desorption processes using 1mM NaOH and microwave irradiation processes. Kinetic analyses of re-adsorption were performed using pseudo first- and second-order models. Regression results revealed that a pseudo first-order model accurately captured re-adsorption kinetics. The regeneration efficiency was 28, 30, 35 and 44% at 18, 28, 38 and 48 degrees C using desorption agent of 1mM NaOH for 24h, respectively. Microwave power was considered the most important factor in regeneration experiments, as the temperature reached by exhausted CNTs was directly related to microwave power in this study. Additionally, microwave regeneration was more effective than the desorption agent of NaOH. The most effective conditions for regenerating exhausted CNTs were a microwave power input of 1000 W for 20 min.

摘要

本研究评估了使用1mM NaOH通过解吸过程和微波辐照过程再生的耗尽碳纳米管。使用伪一级和二级模型对再吸附进行了动力学分析。回归结果表明,伪一级模型准确地捕捉了再吸附动力学。在18、28、38和48摄氏度下,分别使用1mM NaOH解吸剂24小时,再生效率分别为28%、30%、35%和44%。在本研究中,由于耗尽的碳纳米管达到的温度与微波功率直接相关,因此微波功率被认为是再生实验中最重要的因素。此外,微波再生比NaOH解吸剂更有效。再生耗尽碳纳米管的最有效条件是输入1000W微波功率20分钟。

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