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Modeling Approach To Assess Clustering Impact on Release Rates of Pesticides from Microencapsulated Products

机译:评估聚类对微胶囊产品中农药释放速率影响的建模方法

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The pesticide release rate from polymer-encapsulated microcapsules is controlled by diffusion across the polymer membrane, membrane thickness, and pesticide loading. However, conditions for microcapsule clustering following conventional application practices and the impact of clustering on the overall release rate are often ignored. Microcapsules are delivered to target surfaces using water droplets as a carrier, and capillary-driven velocities arise within the deposited sessile drop as the water evaporates. This work describes experimental observations and a quasi-static mathematical approach used to elucidate microcapsule clusters that remain following the drop-drying process, along with the anticipated patterns for pesticide release as a function of cluster geometries. The dynamic behavior of a drying sessile drop was modeled as a trajectory of constrained quasi-static equilibrium shapes having a fixed contact line. Observed monolayer clustering of microcapsules was a function of the initial contact angle and size of the sessile drop, evaporation rate, and the microcapsule number density within the drop. The net pesticide release rate from microcapsule clusters was calculated from superposition of smaller decomposed cluster geometries for which release rates were determined by numerical solution to the mass balance governing equation, thereby coupling the self-assembly of microcapsule and microcapsule clustering with environmental release rate predictions.
机译:农药从聚合物包封的微胶囊中的释放速率由聚合物膜上的扩散,膜厚度和农药装载量控制。然而,通常忽略了遵循常规应用实践的微胶囊聚集条件和聚集对总释放速率的影响。使用水滴作为载体将微胶囊递送到目标表面,并且随着水的蒸发,在沉积的无固定液滴内产生毛细管驱动的速度。这项工作描述了用于阐明液滴干燥过程后残留的微胶囊簇的实验观察结果和准静态数学方法,以及根据簇几何形状释放农药的预期模式。干燥无柄水滴的动态行为被建模为具有固定接触线的受约束准静态平衡形状的轨迹。观察到的微胶囊的单层聚类是初始接触角和固着液滴的大小,蒸发速率以及液滴内微胶囊数量密度的函数。微胶囊簇的净农药释放量是通过较小分解的簇几何形状的叠加来计算的,较小的簇簇几何形状通过数值解法对质量平衡控制方程进行确定,从而将微胶囊的自组装和微胶囊簇的自组装与环境释放速率预测联系起来。

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