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Kinetic Resolution of the Interactions between Agrochemical Products and Adjuvant Systems upon Mixing

机译:混合后农药与佐剂系统之间相互作用的动力学拆分

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The addition of an adjuvant to a pesticide usually occurs in a mix-tank, before spray application to the crop. Their interaction is potentially crucial to overall efficacy but has received little attention from a physical chemical perspective. Study was undertaken by laser diffraction, Raman spectroscopy, and small-angle X-ray scattering to resolve these physical processes. It was shown that migration of the pesticide into the adjuvant droplet occurred in all cases studied. The level of transfer was dependent upon adjuvant level, adjuvant solubility, and surfactant level. For suspension pesticides, dissolution of crystallites within the droplet occurred to a degree limited by solubility. The results directly demonstrate the transfer of the pesticide into the adjuvant carrier. This indicates that for emulsion-based pesticides, application to the target is likely as a homogeneously mixed droplet, whereas for suspension pesticides, solubility may limit transfer and dissolution, leading to heterogeneity in the applied particles.
机译:在将农药喷洒到农作物之前,通常在混合罐中向农药添加佐剂。它们的相互作用对于整体功效可能至关重要,但从物理化学角度来看却鲜有关注。通过激光衍射,拉曼光谱和小角度X射线散射进行了研究,以解决这些物理过程。结果表明,在所有研究的案例中均发生了农药向佐剂小滴中的迁移。转移水平取决于佐剂水平,佐剂溶解度和表面活性剂水平。对于悬浮农药,微晶在微滴内的溶解程度受到溶解度的限制。结果直接证明了农药已转移到佐剂载体中。这表明,对于基于乳剂的农药,可能以均匀混合的液滴形式应用于目标,而对于悬浮农药,其溶解度可能会限制转移和溶解,从而导致所施用颗粒的不均一性。

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