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Reduction of the environmental impact of pesticides: Waxy microspheresencapsulating the insecticide carbaryl

机译:减少农药对环境的影响:蜡状微球包裹杀虫剂西维因

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A controlled-release system with reduced environmental impact was produced by encapsulating the pesticide carbaryl in the waxy lipophilic material Gelucire 54/02. The microspheres were prepared by a modified hydrophobic congealable disperse-phase method. The influence of experimental parameters, such as the reciprocal ratio between the amounts of pesticide and wax employed, on size, morphology, loading efficiency, and release behavior of the particles was evaluated. Microspheres were free-flowing and showed a nonporous scaly surface at SEM analysis. The mean particle size ranged from 15.8 to 19.8 mum and was independent of the amount of Gelucire used to prepare the microspheres. At a fixed Gelucire content, the increase in theoretical carbaryl content yielded up to 72% loading efficiency, whereas at a fixed carbaryl content the increase in Gelucire amount produced a 64% increase in encapsulation efficiency. These data were accounted for by the carbaryl leakage from molten Gelucire toward the dispersing aqueous phase. The release profiles of carbaryl from microspheres showed that the use of increasing amounts of waxy material decreased the carbaryl release rate, whereas at a fixed Gelucire content, the release was the slowest when carbaryl was not completely dissolved within the matrix. The possibility to achieve different burst effects by simply varying the formulation parameters offers an efficient tool to ensure the fast release of an active dose of insecticide. The lower vertical mobility of carbaryl encapsulated in waxy microspheres compared to the vertical mobility of the technical-grade product showed that the controlled-release system has a lower potential risk for groundwater contamination.
机译:通过将农药西维因石蜡封装在蜡状亲脂性材料Gelucire 54/02中,可以生产出对环境影响较小的控释系统。通过改进的疏水可凝分散相法制备微球。评估了实验参数的影响,例如农药和蜡的用量之间的倒数比,对尺寸,形态,负载效率和颗粒的释放行为的影响。微球自由流动并且在SEM分析中显示无孔的鳞片状表面。平均粒径为15.8至19.8微米,与用于制备微球的Gelucire量无关。在固定的Gelucire含量下,理论西芳基含量的增加可产生高达72%的装载效率,而在固定的carbaryl含量下,Gelucire量的增加可使封装效率提高64%。这些数据是由于西维因从熔融Gelucire向熔融水相的泄漏所致。西维因从微球中的释放曲线表明,使用增加量的蜡状材料会降低西维因的释放速率,而在固定的Gelucire含量下,当西维因未完全溶解在基质中时,释放最慢。只需改变配方参数即可达到不同的爆发效果,这为确保快速释放有效剂量的杀虫剂提供了有效的工具。与工业级产品的垂直迁移率相比,蜡状微球中的西维因化合物的垂直迁移率较低,这表明控释系统对地下水污染的潜在风险较低。

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