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咪唑啉酮类除草剂与土壤腐殖酸的相互作用。实验结果与分子模拟

Interaction of imidazolinone herbicides with soil humic acids. Experimental results and molecular modeling.

作者信息

Nègre M, Schulten H R, Gennari M, Vindrola D

机构信息

Università degli Studi di Torino, Dipartimento di Valorizzazione e Protezione delle Risorse Agroforestali, Chimica Agraria, Grugliasco, Italy.

出版信息

J Environ Sci Health B. 2001 Mar;36(2):107-25. doi: 10.1081/PFC-100103738.

Abstract

Adsorption and desorption isotherms of the herbicides imazapyr, imazethapyr and imazaquin on a soil humic acid have been performed at pH 2.8 and 4.0 (below and above the pKa of the herbicides). At both pH, adsorption increased according to the lipophilic character of the molecules (imazapyr < imazethapyr << imazaquin). The extent of adsorption was higher at pH 2.8 than at pH 4.0 because of the partial ionization of the carboxylic groups of both herbicides and humic acids at increasing pH. Desorption of imazapyr and imazethapyr was nearly complete at pH 4 and higher than 60% at pH 2.8 while desorption of imazaquin was 45 and 8% at pH 4 and 2.8, respectively. No differences between adsorption isotherms at 10 degrees C and 25 degrees C were observed a pH 4.0 indicating that adsorption involved very weak bonds while at pH 2.8, adsorption was higher at 10 degrees C than at 25 degrees C indicating an exothermic process. The isosteric enthalpy of adsorption of each herbicide was low (about -1 kJoule mole(-1)) suggesting that low energetic bonds were involved. Adsorption on different humic acids has indicated that for each herbicide, the extent of adsorption expressed as Kd was correlated with the amount of carboxylic and aromatic groups of humic acids suggesting that hydrogen bonding and/or charge-transfer complexes formation could take place. Molecular modeling and geometry optimization of humic acid and soil organic matter (SOM) herbicide complexes were also performed. The results obtained with this theoretical approach gave a consistent chemical interpretation of the experimental results. To the best of our knowledge this is the first report to contribute to a better understanding of site-specific bonding of herbicides in SOM complexes by nanochemical modeling and distinct energy descriptors.

摘要

已在pH值2.8和4.0(低于和高于除草剂的pKa)条件下,对除草剂咪草烟、灭草烟和咪唑喹啉酸在土壤腐殖酸上的吸附和解吸等温线进行了测定。在这两种pH值条件下,吸附作用均根据分子的亲脂性而增加(咪草烟<灭草烟<<咪唑喹啉酸)。由于随着pH值升高,两种除草剂和腐殖酸的羧基发生部分电离,所以在pH 2.8时的吸附程度高于pH 4.0时的吸附程度。咪草烟和灭草烟在pH 4时的解吸几乎完全,在pH 2.8时高于60%,而咪唑喹啉酸在pH 4和2.8时的解吸率分别为45%和8%。在pH 4.0时,未观察到10℃和25℃下吸附等温线之间存在差异;这表明吸附涉及非常弱的键,而在pH 2.8时,10℃时的吸附高于25℃时的吸附,表明这是一个放热过程。每种除草剂的等量吸附热都很低(约-1千焦每摩尔),这表明涉及低能键。在不同腐殖酸上的吸附表明,对于每种除草剂,以分配系数Kd表示的吸附程度与腐殖酸中羧基和芳香族基团的数量相关;这表明可能发生了氢键形成和/或电荷转移络合物形成。还对腐殖酸和土壤有机质(SOM)除草剂络合物进行了分子建模和几何优化。用这种理论方法获得的结果对实验结果给出了一致的化学解释。据我们所知,这是第一份通过纳米化学建模和独特的能量描述符,有助于更好地理解除草剂在SOM络合物中位点特异性键合的报告。

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