Chang Chun-ying, Zheng Yin-tian, Lü Yi-zhong
College of Resources and Environmental Sciences, China Agricultural University, Beijing.
Guang Pu Xue Yu Guang Pu Fen Xi. 2010 Oct;30(10):2641-5.
This study mainly researched the adsorption properties and adsorption mechanism of atrazine on three different types of humic acids: the black soil humic acid, the chestnut soil humic acid and the humic acid purchased. After the extraction of humic acid from the two different types of soil, the black soil and chestnut soil, adsorption experiments were carried out using the batch equilibrium techniques. Then FTIR and ESR spectral analysis methods were employed to explain the functional mechanism between atrazine and humic acid. The results showed that the sorption of humic acid on atazine was very fast at the beginning, then went to slower and finally came to equilibrium. The relationship between the amount of atrazine sorbed by the three humic acids and reaction time all fitted logarithmic and hyperbolic equations well. Adsorption isotherms of atrazine on the three humic acids all are L-type and in accordance with the linear model and the Freundlich model. Because of the different structure, there is significant difference between the adsorption isotherm of atrazine on purchased humic acid and extract humic acid. The interactions between humic acid and atrazine are mostly weak forces, such as the H-bond, proton transfer, charge transfer, van der Waals force and so on. In addition, ESR analysis proved that charge transfer exists between humic acid and atrazine during the process of adsorption.
本研究主要探讨了阿特拉津在三种不同类型腐殖酸(黑土腐殖酸、栗钙土腐殖酸和市购腐殖酸)上的吸附特性及吸附机理。从黑土和栗钙土这两种不同类型土壤中提取腐殖酸后,采用批量平衡技术进行吸附实验。然后运用傅里叶变换红外光谱(FTIR)和电子自旋共振(ESR)光谱分析方法来解释阿特拉津与腐殖酸之间的作用机理。结果表明,腐殖酸对阿特拉津的吸附起初非常迅速,随后变慢,最终达到平衡。三种腐殖酸对阿特拉津的吸附量与反应时间的关系均能很好地拟合对数方程和双曲线方程。阿特拉津在三种腐殖酸上的吸附等温线均为L型,符合线性模型和弗伦德利希模型。由于结构不同,市购腐殖酸和提取腐殖酸对阿特拉津的吸附等温线存在显著差异。腐殖酸与阿特拉津之间的相互作用大多为弱作用力,如氢键、质子转移、电荷转移、范德华力等。此外,ESR分析证明在吸附过程中腐殖酸与阿特拉津之间存在电荷转移。