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稳定化垃圾渗滤液在微孔和中孔活性炭上的平衡及内扩散。

Equilibrium and intra-particle diffusion of stabilized landfill leachate onto micro- and meso-porous activated carbon.

机构信息

Department of Environmental Engineering Sciences, University of Florida, P.O. Box 116450, Gainesville, FL 32611-6450, USA.

出版信息

Water Res. 2012 Feb 1;46(2):491-9. doi: 10.1016/j.watres.2011.11.007. Epub 2011 Nov 15.

Abstract

Stabilized landfill leachate has previously been treated with activated carbon (AC); however, information on the selectivity of AC depending upon the pore size is minimal. Isotherm and kinetic experiments were conducted using three commercially available AC products, one micro-porous and two meso-porous. Equilibrium adsorption and intra-particle diffusion of organic matter from stabilized leachate was studied. Isotherm experimental data were fitted to Langmuir, Freundlich, and Redlich-Peterson isotherm models in non-linear forms. Of the three isotherm models, the Redlich-Peterson model provided the best fit to the experimental data and showed a similar organic matter adsorption capacity (approximately 0.2 g total organic carbon (TOC) g(-1) AC) for both micro-porous and meso-porous AC. The organic matter effective intra-particle diffusion coefficients (D(e)) in both AC types were on the order of 10(-10) m(2) s(-1) for AC particle sizes greater than 0.5 mm. Meso-porous ACs showed slightly higher D(e) compared to micro-porous AC. Rapid small-scale tests showed a maximum of 80% TOC removal from leachate by each AC investigated. Fluorescence spectroscopy showed a preferential adsorption of fulvic-type organic matter with an increase in empty bed contact time by each AC.

摘要

稳定化垃圾渗滤液先前已使用活性炭(AC)进行处理;然而,关于 AC 根据孔径大小的选择性的信息却很少。使用三种市售的 AC 产品(一种微孔和两种中孔)进行了等温线和动力学实验。研究了稳定化渗滤液中有机物的平衡吸附和颗粒内扩散。等温线实验数据以非线性形式拟合到 Langmuir、Freundlich 和 Redlich-Peterson 等温模型中。在这三种等温模型中,Redlich-Peterson 模型对实验数据的拟合效果最好,并且对于微孔和中孔 AC 都表现出相似的有机物吸附容量(约 0.2 g 总有机碳(TOC)g(-1) AC)。在 AC 粒径大于 0.5mm 的情况下,两种 AC 类型中的有机物有效颗粒内扩散系数(D(e))均为 10(-10) m(2) s(-1)量级。中孔 AC 的 D(e)略高于微孔 AC。快速小尺度测试表明,每种 AC 最多可去除渗滤液中 80%的 TOC。荧光光谱表明,随着每种 AC 的空床接触时间的增加,富里酸型有机物优先吸附。

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