Structural and Sorption Characteristics of Adsorbed Humic Acid on Clay Minerals

吸附 化学 粘土矿物 吸附 腐植酸 蒙脱石 高岭石 芳香性 分馏 环境化学 无机化学 有机化学 矿物学 分子 肥料
作者
Kaijun Wang,Baoshan Xing
出处
期刊:Journal of Environmental Quality [Wiley]
卷期号:34 (1): 342-349 被引量:261
标识
DOI:10.2134/jeq2005.0342
摘要

ABSTRACT Clay–humic complexes are commonly distributed in natural environments. They play very important roles in regulating the transport and retention of hydrophobic organic contaminants in soils and sediments. This study examined the structural changes of humic acid (HA) after adsorption by clay minerals and determined phenanthrene sorption by clay–humic complexes. Solid‐ and liquid‐state 13 C nuclear magnetic resonance (NMR), for the first time, provided direct evidence for HA fractionation during adsorption on mineral surfaces, that is, aliphatic fractions were preferentially adsorbed by clay minerals while aromatic fractions were left in the solution. The ratio of UV absorbance of HA at 465 and 665 nm (E 4 to E 6 ratio), which is related to aromaticity, corroborated with the NMR results. For both montmorillonite and kaolinite, adsorbed HA fractions had higher sorption linearity ( N ) and affinity ( K oc ) than the source HA. The K oc of adsorbed HA for the clay–humic complexes could be up to several times higher than that of the source HA. This large increase may be contributed by the low polarity of the bound HA. Moreover, for each mineral, the N values of adsorbed HA increased with increasing HA loading. It is believed that HA may develop a more condensed structure on mineral surface at lower HA loading level due to the stronger interactions between HA and mineral surface as a result of close contacts.
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