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Preparation of Polymer Microparticles Through Non-aqueous Suspension Polycondensations: Part Ⅲ—Degradation of PBS Microparticles in Different Aqueous Environments

机译:非水悬浮缩聚法制备聚合物微粒:第三部分:不同水环境中PBS微粒的降解

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The present work investigated the degradation of poly(butylene succinate) (PBS) in different aqueous media, as PBS microparticles are intended for use in personal care and cosmetic applications. Degradation tests were performed for the first time at different conditions of salinity, pH and temperature for two types of PBS: microparticles produced through suspension polycondensations and commercial pellets produced through bulk polycondensations. As shown experimentally, rates of PBS degradation were sensitive to modification of degradation conditions, being faster at higher temperatures, at acidic conditions and at alkaline conditions. However, PBS degradation was not very sensitive to the presence of salts, although degradation rates were shown to be higher in real sea water samples. Additionally, rates of PBS degradation were shown to depend significantly on PBS properties and morphology. Based on the obtained experimental data, a model was proposed to evaluate the effects of degradation temperature and particle morphology on the rates of PBS degradation in sea water, providing suitable fits for the available data.[GRAPHICS].
机译:本研究研究了聚丁二酸丁二醇酯(PBS)在不同水性介质中的降解,因为PBS微粒打算用于个人护理和化妆品应用。两种类型的PBS分别在盐度,pH和温度的不同条件下进行了首次降解测试:通过悬浮缩聚产生的微粒和通过本体缩聚产生的商业颗粒。如实验所示,PBS降解速率对降解条件的改变敏感,在较高温度,酸性条件和碱性条件下,降解速度更快。但是,PBS降解对盐的存在不是很敏感,尽管在实际的海水样品中,降解速率较高。另外,显示出PBS降解的速率显着取决于PBS的性质和形态。基于获得的实验数据,提出了一个模型来评估降解温度和颗粒形态对海水中PBS降解速率的影响,为现有数据提供合适的拟合。[GRAPHICS]。

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