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活性炭上气相甲醛吸附等温线研究:吸附容量与表面官能团密度的关系。

Gas-phase formaldehyde adsorption isotherm studies on activated carbon: correlations of adsorption capacity to surface functional group density.

机构信息

Department of Civil, Architectural, and Environmental Engineering, University of Texas at Austin, Cockrell School of Engineering, Austin, Texas 78712-0284, United States.

出版信息

Environ Sci Technol. 2011 Aug 1;45(15):6498-503. doi: 10.1021/es104286d. Epub 2011 Jul 7.

Abstract

Formaldehyde (HCHO) adsorption isotherms were developed for the first time on three activated carbons representing one activated carbon fiber (ACF) cloth, one all-purpose granular activated carbon (GAC), and one GAC commercially promoted for gas-phase HCHO removal. The three activated carbons were evaluated for HCHO removal in the low-ppm(v) range and for water vapor adsorption from relative pressures of 0.1-0.9 at 26 °C where, according to the IUPAC isotherm classification system, the adsorption isotherms observed exhibited Type V behavior. A Type V adsorption isotherm model recently proposed by Qi and LeVan (Q-L) was selected to model the observed adsorption behavior because it reduces to a finite, nonzero limit at low partial pressures and it describes the entire range of adsorption considered in this study. The Q-L model was applied to a polar organic adsorbate to fit HCHO adsorption isotherms for the three activated carbons. The physical and chemical characteristics of the activated carbon surfaces were characterized using nitrogen adsorption isotherms, X-ray photoelectron spectroscopy (XPS), and Boehm titrations. At low concentrations, HCHO adsorption capacity was most strongly related to the density of basic surface functional groups (SFGs), while water vapor adsorption was most strongly influenced by the density of acidic SFGs.

摘要

首次在三种活性炭上开发了甲醛(HCHO)吸附等温线,这三种活性炭分别代表一种活性炭纤维(ACF)布、一种通用颗粒状活性炭(GAC)和一种专门用于气相 HCHO 去除的 GAC。在 26°C 时,相对压力为 0.1-0.9 的低 ppm(v)范围内评估了这三种活性炭对 HCHO 的去除能力和水蒸气吸附能力。根据 IUPAC 等温线分类系统,观察到的吸附等温线表现出 V 型行为,因此选择了 Qi 和 LeVan(Q-L)最近提出的 V 型吸附等温线模型来模拟观察到的吸附行为,因为它在低分压下减少到有限的非零极限,并且描述了本研究中考虑的整个吸附范围。将 Q-L 模型应用于极性有机吸附质,以拟合三种活性炭的 HCHO 吸附等温线。通过氮气吸附等温线、X 射线光电子能谱(XPS)和Boehm 滴定法对活性炭表面的物理化学特性进行了表征。在低浓度下,HCHO 的吸附容量与碱性表面官能团(SFG)的密度密切相关,而水蒸气的吸附则主要受到酸性 SFG 密度的影响。

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