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Factors Affecting the Design of Slow Release Formulations of Herbicides Based on Clay-Surfactant Systems. A Methodological Approach

机译:影响因素基于除草剂的缓释制剂对粘土表面活性剂体系的设计。方法论方法

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摘要

A search for clay-surfactant based formulations with high percentage of the active ingredient, which can yield slow release of active molecules is described. The active ingredients were the herbicides metribuzin (MZ), mesotrione (MS) and flurtamone (FL), whose solubilities were examined in the presence of four commercial surfactants; (i) neutral: two berols (B048, B266) and an alkylpolyglucoside (AG6202); (ii) cationic: an ethoxylated amine (ET/15). Significant percent of active ingredient (a.i.) in the clay/surfactant/herbicide formulations could be achieved only when most of the surfactant was added as micelles. MZ and FL were well solubilized by berols, whereas MS by ET/15. Sorption of surfactants on the clay mineral sepiolite occurred mostly by sorption of micelles, and the loadings exceeded the CEC. Higher loadings were determined for B266 and ET/15. The sorption of surfactants was modeled by using the Langmuir-Scatchard equation which permitted the determination of binding coefficients that could be used for further predictions of the sorbed amounts of surfactants under a wide range of clay/surfactant ratios. A possibility was tested of designing clay-surfactant based formulations of certain herbicides by assuming the same ratio between herbicides and surfactants in the formulations as for herbicides incorporated in micelles in solution. Calculations indicated that satisfactory FL formulations could not be synthesized. The experimental fractions of herbicides in the formulations were in agreement with the predicted ones for MS and MZ. The validity of this approach was confirmed in in vitro release tests that showed a slowing down of the release of a.i. from the designed formulations relative to the technical products. Soil dissipation studies with MS formulations also showed improved bioactivity of the clay-surfactant formulation relative to the commercial one. This methodological approach can be extended to other clay-surfactant systems for encapsulation and slow release of target molecules of interest.
机译:描述了对具有高百分比的活性成分的基于粘土表面活性剂的制剂的搜索,其可以产生活性分子的缓慢释放。活性成分是除草剂甲丁净(MZ),甲基磺草酮(MS)和氟坦酮(FL),在四种市售表面活性剂的存在下检测了它们的溶解度。 (i)中性的:两个berol(B048,B266)和一个烷基聚葡糖苷(AG6202); (ii)阳离子:乙氧基化胺(ET / 15)。仅当大多数表面活性剂以胶束形式添加时,才能在粘土/表面活性剂/除草剂配方中获得显着百分比的活性成分(a.i.)。 MZ和FL可以被berols很好地溶解,而MS可以被ET / 15溶解。表面活性剂在粘土矿物海泡石上的吸附主要是通过胶束的吸附而引起的,其负载量超过了CEC。确定了B266和ET / 15的较高载荷。表面活性剂的吸附是通过使用Langmuir-Scatchard方程建模的,该方程允许确定结合系数,该系数可用于进一步预测在宽范围的粘土/表面活性剂比率下表面活性剂的吸附量。通过假设制剂中除草剂和表面活性剂之间的比例与溶液中掺入胶束中的除草剂的比例相同,测试了设计某些除草剂的基于粘土表面活性剂的配方的可能性。计算表明不能合成令人满意的FL配方。配方中除草剂的实验分数与MS和MZ的预测分数一致。这种方法的有效性在体外释放试验中得到了证实,该试验表明a.i.的释放减慢了。相对于技术产品的设计配方。 MS配方的土壤消散研究也表明,相对于商业配方,粘土表面活性剂配方具有更高的生物活性。这种方法学方法可以扩展到其他粘土表面活性剂体系,以进行包囊和缓慢释放目标靶分子。

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