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首页> 外文期刊>Chemosphere >Inclusion complexes of α- and γ-cyclodextrins and the herbicide norflurazon: Ⅰ. Preparation and characterisation. Ⅱ. Enhanced solubilisation and removal from soils
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Inclusion complexes of α- and γ-cyclodextrins and the herbicide norflurazon: Ⅰ. Preparation and characterisation. Ⅱ. Enhanced solubilisation and removal from soils

机译:α-和γ-环糊精与除草剂去氟氟龙的包合物:Ⅰ。准备和表征。 Ⅱ。增强溶解性和从土壤中去除

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The interaction of norflurazon with α- and γ-cyclodextrins (CDs) yielded the formation of inclusion complexes at a 1:1 stoichiometric ratio in solution and in the solid state. Apparent stability constants of 50.7 ± 1.6 and 37 ± 1.7 M~(-1) and an increase in herbicide solubility by up to five and fourfold for α- and γ-CD, respectively, were determined from the phase solubility diagrams at 25℃ in water. Three processing methods (kneading, spray-drying and vacuum evaporation) were used to prepare norflurazon-CD solid inclusion complexes, which were characterised by infrared spec-troscopy, differential scanning calorimetry and scanning electron microscopy. A high increase in the norflurazon dissolution rate was obtained with all the solid complexes with γ-CD, but when α-CD was used, only the solid system obtained after the vacuum evaporation process showed a higher dissolution rate. This finding is a first step in the development of new, environmentally sound formulations of norflurazon (NFL), due to the capacity for increasing its dissolution rate and hydrosolubility, and thus diminishing the use of organic solvents. On the other hand, the effect of α- and γ-cyclodextrin on the solubility of norflurazon in solution was also considered as a way of modifying its behaviour in the soil environment. Desorption studies of NFL from soils in the presence of α- and γ-cyclodextrin were carried out using a batch equilibration method. The results obtained showed that α- and γ-cyclodextrin greatly increased the removal of norflurazon previously adsorbed, proving the potential use of these CDs for in situ remediation of pesticide-contaminated soils.
机译:氟氟龙与α-和γ-环糊精(CD)的相互作用在溶液中和固态下均以化学计量比为1:1形成了包合物。根据25°C时的相溶解度图确定了表观稳定常数50.7±1.6和37±1.7 M〜(-1)以及α-和γ-CD的除草剂溶解度分别增加了5倍和4倍。水。采用捏合,喷雾干燥和真空蒸发三种工艺制备了氟氟龙-CD固体包合物,并通过红外光谱,差示扫描量热法和扫描电镜进行了表征。所有具有γ-CD的固体配合物的氟氟龙溶解率都有很高的提高,但是当使用α-CD时,只有在真空蒸发过程之后获得的固体体系显示出较高的溶解率。这一发现是开发新的,对环境无害的诺氟拉on(NFL)的第一步,这是因为它具有提高其溶解速度和水溶性的能力,从而减少了有机溶剂的使用。另一方面,α-和γ-环糊精对去氟氟沙松在溶液中的溶解度的影响也被认为是改变其在土壤环境中行为的一种方式。使用分批平衡法进行了在α-和γ-环糊精存在下土壤中NFL的解吸研究。获得的结果表明,α-和γ-环糊精大大增加了先前吸附的去氟氟flu的去除,证明了这些CD可以用于原位修复农药污染的土壤。

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