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Improvement of the desorption of the herbicide norflurazon from soils via complexation with beta-cyclodextrin

机译:通过与β-环糊精的络合改善除草剂去氟氟虫草从土壤中的解吸

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The effect of beta-cyclodextrin (beta-CD) on the removal of the herbicide norflurazon (NFL) from soils has been investigated. The interaction of NFL with beta-CD in solution yielded the formation of a water-soluble inclusion complex at 1:1 stoichiometric ratio, which gave an increase in NFL solubility. Desorption studies of NFL previously adsorbed on six soils of different characteristics have been performed in the presence of 0.01 M beta-CD or 0.01 M Ca(NO3)(2) as extractant solutions. Positive hysteresis was observed in all soils when 0.01 M Ca(NO3)(2) solution was used, indicating that desorption of NFL from these soils was not completely reversible. On the contrary, the application of beta-CD solutions to soils where NFL had been previously adsorbed increased very much its desorption, and a negative hysteresis was obtained for all soils studied; that is, more NFL was desorbed with respect to NFL adsorption isotherm. A clear relationship was observed between the physicochemical characteristics of the soils and the beta-CD concentration necessary to remove the herbicide, the percentages of desorption observed for each soil being inversely related to the values obtained for the Freundlich sorption capacity parameter of the herbicide, K-f. In general, high desorption yields can be obtained with very low beta-CD concentrations, which is an important advantage from an economic point of view, although in those soils that present an extremely high NFL adsorption, higher amounts of beta-CD should be used. The results obtained indicate the high extracting power of beta-CD toward the herbicide previously adsorbed on the soils and the potential use of P-CD for in situ remediation of pesticide-contaminated soils.
机译:研究了β-环糊精(β-CD)对从土壤中除草剂去氟氟龙(NFL)的去除作用。 NFL与溶液中β-CD的相互作用导致以化学计量比1:1形成水溶性包合物,从而增加了NFL的溶解度。在存在0.01 Mβ-CD或0.01 M Ca(NO3)(2)作为萃取剂溶液的情况下,已经进行了先前吸附在六种不同特性的土壤上的NFL的解吸研究。当使用0.01 M Ca(NO3)(2)溶液时,在所有土壤中均观察到正磁滞现象,这表明NFL从这些土壤中的解吸不是完全可逆的。相反,在先前已吸附NFL的土壤上使用β-CD溶液会大大增加其解吸作用,并且所有研究的土壤均具有负磁滞现象。即,相对于NFL吸附等温线,更多的NFL被解吸。在土壤的理化特性与去除除草剂所需的β-CD浓度之间观察到了明确的关系,每种土壤的解吸百分比与除草剂的Freundlich吸附能力参数Kf的值成反比。 。通常,在非常低的β-CD浓度下即可获得高的脱附率,从经济角度来看,这是一个重要的优势,尽管在那些NFL吸附极高的土壤中,应使用大量的β-CD 。获得的结果表明,β-CD对先前吸附在土壤上的除草剂具有很高的提取能力,并且P-CD可能用于就地修复农药污染的土壤。

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