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利用石英晶体微天平的耗散特性研究腐殖酸在氧化铝上的吸附。

Characterization of adsorption of humic acid onto alumina using quartz crystal microbalance with dissipation.

机构信息

Department of Environmental Engineering, Peking University, The Key Laboratory of Water and Sediment Sciences, Ministry of Education, Beijing 100871, China.

出版信息

Langmuir. 2011 Aug 16;27(16):9860-5. doi: 10.1021/la1042102. Epub 2011 Jul 21.

Abstract

In this paper, a quartz crystal microbalance with dissipation monitoring (QCM-D) is used to investigate humic acid (HA) adsorption onto alumina (Al(2)O(3)). The amount of adsorption and layer structures of HA were determined by the real-time monitoring of resonance frequency and energy dissipation changes (Δf and ΔD). The effect of HA concentration, HA molecular characteristics (molecular weight and polarity), and pH on HA adsorption onto Al(2)O(3) were investigated. The mass of HA adsorption increases as the concentration of HA increases. The masses are about 24, 60, and 87 ng cm(-2) as the concentration of DOC is 1.0, 4.85, and 92.0 mg L(-1), respectively. The adsorbed layer of HA is more nonrigid, and the mass of HA adsorption is higher at weakly acidic pH values. It was 20, 80, 65, and 45 ng cm(-2) at pH values of 4.5, 5.5, 6.5, and 8.0, respectively. This reveals that efficient HA removal by coagulation at weakly acidic pH values is not just due to the hydrolysis of Al ions as previously presumed. The adsorbed layer of hydrophobic HA is more nonrigid than hydrophobic HA (fractionated by Amberlite XAD-8 resin), and the mass adsorption for the hydrophobic fraction is about four times higher than the hydrophilic fraction (120 ng cm(-2) and 30 ng cm(-2)). The method is of value in the research to establish a quantified calculation model for the coagulation process.

摘要

本文采用石英晶体微天平(QCM-D)监测耗散变化,研究了腐殖酸(HA)在氧化铝(Al(2)O(3))上的吸附。通过实时监测共振频率和能量耗散变化(Δf 和 ΔD),确定了 HA 的吸附量和层结构。研究了 HA 浓度、HA 分子特性(分子量和极性)和 pH 值对 Al(2)O(3)上 HA 吸附的影响。随着 HA 浓度的增加,HA 的吸附量增加。当 DOC 浓度分别为 1.0、4.85 和 92.0mg/L 时,HA 的吸附量约为 24、60 和 87ng/cm(-2)。HA 的吸附层较不刚性,在弱酸性 pH 值下,HA 的吸附量较高。当 pH 值分别为 4.5、5.5、6.5 和 8.0 时,HA 的吸附量分别为 20、80、65 和 45ng/cm(-2)。这表明,以前认为的仅仅是由于 Al 离子的水解,在弱酸性 pH 值下通过混凝去除 HA 的效率并不高。疏水性 HA 的吸附层比疏水性 HA(用 Amberlite XAD-8 树脂分离)更不刚性,疏水性部分的吸附量约为亲水性部分的四倍(120ng/cm(-2)和 30ng/cm(-2))。该方法对于建立混凝过程的定量计算模型具有重要价值。

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