Gu Cheng, Karthikeyan K G
Univ. of Wisconsin-Madison, Madison, WI 53706, USA.
J Environ Qual. 2008 Mar-Apr;37(2):704-11. doi: 10.2134/jeq2007.0030.
Humic substances, by altering the surface properties and/or competing for available reaction sites, can either suppress or promote sorption of organic compounds to mineral surfaces. Limited literature evidence points to the reduction in sorption of the antibiotic tetracycline to clay minerals in the presence of humic substances. We investigated the surface interaction of Elliott soil humic acid (ESHA) with hydrous Al oxide (HAO) and the effect of this association on tetracycline sorption. Strong interaction between ESHA and HAO led to ESHA-promoted dissolution of HAO and surface charge reversal. The ESHA-HAO sorption-desorption isotherms were successfully described using a modified Langmuir model that accounted for the heterogeneity of HAO surface and ESHA. Ligand exchange was proposed as the major interaction mechanism, and the edge Al atoms on HAO surface were considered as the sorption sites for ESHA macromolecules. ESHA was coated onto HAO to achieve two different organic content (foc) levels of 0.81 and 1.52%. Sorption results were compared for the binary ESHA-tetracycline and HAO-tetracycline systems, and the ternary ESHA-HAO-tetracycline system. The coating of ESHA on HAO significantly suppressed tetracycline sorption levels, attributable to altered HAO surface charge characteristics and/or direct competition between ESHA and tetracycline for potential sorption sites. Higher foc level, besides increasing the extent of sorption suppression, also resulted in greater ionic strength dependence and increased nonlinearity of sorption behavior. It, therefore, appears that the presence of humic substances, in both dissolved and mineral-bound forms, is likely to increase the environmental mobility of tetracycline compounds.
腐殖质通过改变表面性质和/或竞争可用反应位点,既可以抑制也可以促进有机化合物在矿物表面的吸附。有限的文献证据表明,在腐殖质存在的情况下,抗生素四环素在粘土矿物上的吸附会减少。我们研究了埃利奥特土壤腐殖酸(ESHA)与水合氧化铝(HAO)的表面相互作用以及这种结合对四环素吸附的影响。ESHA与HAO之间的强相互作用导致ESHA促进HAO的溶解和表面电荷反转。使用修正的朗缪尔模型成功描述了ESHA-HAO的吸附-解吸等温线,该模型考虑了HAO表面和ESHA的非均质性。提出配体交换为主要相互作用机制,HAO表面的边缘铝原子被认为是ESHA大分子的吸附位点。将ESHA涂覆在HAO上以实现0.81%和1.52%这两种不同的有机含量(foc)水平。比较了二元ESHA-四环素和HAO-四环素体系以及三元ESHA-HAO-四环素体系的吸附结果。ESHA在HAO上的涂层显著抑制了四环素的吸附水平,这归因于HAO表面电荷特性的改变和/或ESHA与四环素之间对潜在吸附位点的直接竞争。较高的foc水平除了增加吸附抑制程度外,还导致对离子强度的依赖性更大以及吸附行为的非线性增加。因此,似乎溶解态和矿物结合态的腐殖质的存在都可能增加四环素类化合物在环境中的迁移性。