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A Predictive Solubility Tool for Pesticide Emulsifiable Concentrate Formulations

机译:用于农药可乳化浓缩物制剂的预测性溶解性工具

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Emulsifiable concentrates (ECs) are one of the most widely used pesticide formulations because they have a lot of advantages, such as good storage stability, relatively high biological activity, easy weighing, easy production, and so on. An EC is normally prepared by dissolving a pesticide in a nonpolar solvent with surfactants. When a pesticide is hardly soluble in a common nonpolar solvent, a polar solvent is used as a co-solvent. One of the preferred polar solvents, which have been used for this purpose is N-methyl-2-pyrrolidone (NMP). However, because of its toxic profile, which has recently become apparent, the commercial use of NMP is recently restricted in many fields. Under the circumstances, it is desirable to look for an alternative solvent in the pesticide formulation area. The organic conceptual diagram was tried to search for the alternative solvents because it is a useful tool for predicting the physico-chemical properties of an organic compound. In the organic conceptual diagram, the physico-chemical properties are expressed by the combination of the organic value (OV) and the inorganic value (IV). According to the theory, organic compounds that have similar IV/OV ratios (the inorganic organic balance=IOB) are mutually miscible in each other. In order to investigate the applicability of this concept to search for a suitable solvent for a pesticide that is hardly soluble in nonpolar solvents, the relationship of the IOB between two hardly soluble pesticides (i.e., a neonicotinoid insecticide and an herbicide) and several types of solvents was evaluated. As expected, solvents having an IOB close to the targeted pesticide showed high solvency against it, while the pesticide did not dis-solve in solvents, which have an IOB farther off. It was demonstrated that the organic conceptual diagram can be a good tool for the selection of a solvent for a pesticide that is hardly soluble in the usual nonpolar solvents.
机译:可乳化浓缩物(ECS)是最广泛使用的农药配方之一,因为它们具有很多优点,如良好的储存稳定性,生物活性相对较高,易于称重,易于生产等。通常通过将杀虫剂溶解在具有表面活性剂的非极性溶剂中来制备EC。当农药溶于常见的非极性溶剂时,极性溶剂用作共溶剂。已经用于此目的的优选极性溶剂之一是N-甲基-2-吡咯烷酮(NMP)。然而,由于其最近变得明显的毒性概况,最近在许多领域中受到了纽姆斯的商业用途。在这种情况下,期望在农药制剂面积中寻找替代溶剂。有机概念图被尝试寻找替代溶剂,因为它是预测有机化合物的物理化学性质的有用工具。在有机概念图中,物理化学性质通过有机值(OV)和无机值(IV)的组合来表示。根据该理论,具有相似IV / OV比(无机有机平衡= IOB)的有机化合物彼此相互混溶。为了调查该概念的适用性,寻找一种难以溶于非极性溶剂的农药的合适溶剂,其两个几乎溶于杀虫剂(即Neonicotinoid杀虫剂和除草剂)和几种类型之间的IOB的关系评估溶剂。如预期的那样,靠近靶向农药的IOB的溶剂表现出较高的溶剂,而农药在溶剂中没有脱离溶剂,这使得IOB更远。结果表明,有机概念图可以是选择溶剂的良好工具,用于杀虫剂几乎溶于通常的非极性溶剂。

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