首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Preparation of sustained-release chlorpyrifos particles via the emulsification coacervation method and their sustained-release performance
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Preparation of sustained-release chlorpyrifos particles via the emulsification coacervation method and their sustained-release performance

机译:通过乳化凝聚法制备缓释氯吡啶颗粒及其缓释性能

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摘要

MMA-HEMA-MAA ternary random copolymer (PA) and CaCl2 was used as carrier and precipitant, respectively, and emulsification coacervation was adopted to prepare sustained-release chlorpyrifos particles. The particle size, morphology, structure, and the sustained-released performance of the samples were characterized. Results showed that porous and random sustained-release chlorpyrifos particles piled up into small spherical particles. Hydrogen-bonding interactions between PA and chlorpyrifos molecules were observed, and chlorpyrifos was dispersed among the PA molecules as both crystal and noncrystal forms. Raising chlorpyrifos concentrations resulted in larger proportions of chlorpyrifos distributed in the crystalline state. Chlorpyrifos was loaded into the PA crosslinked network structure and the heat resistance of the pesticide was improved significantly. The sustained-release process of chlorpyrifos was controlled by Fick diffusion mechanism, and the release mechansim of the drug consisted with the Korsmeyer-Peppas kinetic equation.
机译:MMA-HEMA-MAA三元无规共聚物(PA)和CaCl2分别用作载体和沉淀剂,采用乳化凝聚化制备缓释氯吡啶颗粒。表征了粒度,形态,结构和持续释放的性能。结果表明,多孔和随机缓释的氯吡啶颗粒堆积成小球形颗粒。观察到PA和氯吡啶分子之间的氢键相互作用,并且在PA分子中分散紫外线,作为晶体和非懊丧的形式。提高氯吡啶浓度导致较大比例在结晶状态下分布的紫外线。将氯吡啶加载到PA交联网络结构中,并且杀虫剂的​​耐热性显着提高。通过Fick扩散机制控制氯吡啶的缓释过程,药物的释放机制包括Korsmeyer-Peppas动力学方程。

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