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Interactions of Three s-Triazines with Humic Acids of Different Structure

机译:三种s-三嗪与不同结构腐殖酸的相互作用

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The adsorption of three s-triazines (atrazine, terbutylazine, and simazine) on three different humic acids (HAs), before and after acidic hydrolysis, was studied at four diverse pH values from 3 to 4.5. The Freundlich sorption affinity (K_f) and intensity (1) of s-triazines were related to the chemical and structural composition of HA and used in a multivariate statistical analysis. At low pH, the sorption values for s-triazines were not directly justified by the content of carboxyl groups in original HA, while only an increase of phenolic carbons in hydrolyzed HA supported the increased s-triazine adsorption. The structural composition of both s-triazines and humic samples explained 86% of the significance in multivariate analyses, whereas the role of pH remained hidden in only 14% of the statistical significance. Adsorption of s-triazines was mainly related to carbon content, hydrophobicity, and aromaticity of HA, thereby implying a predominant binding role of weak dispersive forces. Steric properties explained the larger adsorption affinity of atrazine and terbutylazine with respect to simazine. The occurrence of charge-transfer interactions between atrazine and mainly hydrolyzed HA was further suggested by the increased number of free radicals detected in atrazine-HA complexes at different pH values. Charge-transfer interactions were postulated to occur when HA conformations became progressively controlled by aromatic components. This work indicates that humic matter rich in hydrophobic and aromatic constituents is more likely to adsorb s-triazines and reduce their environmental mobility.
机译:在酸性水解前后,分别在3至4.5的四个不同pH值下研究了三种s-三嗪(阿特拉津,叔丁嗪和simazine)在三种不同腐殖酸(HAs)上的吸附。 s-三嗪的弗氏吸附亲和力(K_f)和强度(1 / n)与HA的化学和结构组成有关,并用于多变量统计分析。在低pH值下,原始HA中羧基的含量不能直接证明s-三嗪的吸附值是合理的,而水解HA中酚碳的增加只能支持s-三嗪的吸附。 s-三嗪和腐殖质样品的结构组成在多变量分析中解释了86%的显着性,而pH的作用仅隐藏在14%的统计学显着性中。 s-三嗪的吸附主要与HA的碳含量,疏水性和芳香性有关,从而暗示弱分散力的主要结合作用。立体性质解释了at去津和叔丁基嗪相对于西azine嗪的更大的吸附亲和力。在不同pH值下,在r去津-HA复合物中检测到的自由基数量增加,进一步暗示了r去津与主要水解的HA之间发生电荷转移相互作用。假定当HA构象逐渐被芳香族组分控制时,电荷转移相互作用就会发生。这项工作表明,富含疏水和芳香成分的腐殖质更可能吸附s-三嗪并降低其环境迁移率。

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