1-氯-4-硝基苯在纳米碳纤维上吸附的实验研究

IF 1.2 Q4 NANOSCIENCE & NANOTECHNOLOGY
A. Mehrizad, P. Gharbani
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引用次数: 6

摘要

摘要:本研究采用间歇式体系研究了1-氯-4-硝基苯(1C4NB)在纳米碳纤维(CNFs)上的吸附。采用响应面法(RSM)分析了接触时间、pH、初始1C4NB浓度、CNFs投加量等操作参数对CNFs吸附1C4NB的影响。方差分析结果证实模型与实验数据有显著的一致性。此外,残差服从正态分布。筛选实验表明,CNFs投加量、初始1C4NB浓度-CNFs投加量和CNFs投加量-接触时间对去除效果影响显著。在工艺参数最优的条件下,前6 min的去除率可达90%以上。结果表明,RSM是一种适合于工艺建模和优化的方法,通过RSM进行实验设计可以节省时间和成本。采用Langmuir、Freundlich和Temkin模型拟合吸附平衡数据。结果表明,等温线数据可以用Freundlich等温线方程很好地描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of 1-Chloro-4-Nitrobenzene adsorption on Carbon nanofibers by experimental design
ABS TRACT: In this study, the adsorption of 1-chloro-4-nitrobenzene (1C4NB) on carbon nanofibers (CNFs), was investigated in a batch system. The combined effects of operating parameters such as contact time, pH, initial 1C4NB concentration, and CNFs dosage on the adsorption of 1C4NB by CNFs were analyzed using response surface methodology (RSM). The analysis of variance results confirmed that there was significant agreement between the model and experimental data. In addition, it was indicated that the residuals followed a normal distribution. The screening experiments showed that significant factors in 1C4NB removal were CNFs dosage, interaction between initial 1C4NB concentration-CNFs dosage and CNFs dosage-contact time. High efficiency removal (>90%) was obtained under optimal value of process parameters in the first 6 min of the removal process. The results indicate that RSM is a suitable method for modeling and optimizing the process, so that experimental design by RSM leads to time and cost saving. Non-linear form of Langmuir, Freundlich and Temkin models were fitted to adsorption equilibrium data. The results showed that the isotherm data can be well described by Freundlich isotherm equation.
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来源期刊
international journal of nano dimension
international journal of nano dimension NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
2.80
自引率
20.00%
发文量
0
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