School of Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou, China.
J Microencapsul. 2020 Jun;37(4):297-304. doi: 10.1080/02652048.2020.1735548. Epub 2020 Mar 9.
For slow release of tea tree oil (TTO), TTO were encapsulated by urea-formaldehyde (UF) resin via polymerisation. The effects of curing time and drying condition on particle size, and TTO loading of the TTO/UF microcapsules were investigated. The results indicated that TTO/UF resin microcapsules with curing time of 80 min had narrow size distribution and good wall cover. Drying at ambient was better to maintain the TTO content than drying at oven. The loading of TTO with curing time of 80 min can be up to 45 wt.% of the mass-proportion to the prepared microcapsules, and more than 90 wt.% of the loaded TTO could be sustainably released in about 5 days. Moreover, the release kinetics of TTO/UF microcapsules was well described by Ritger-Peppas model, revealing non-Fickian diffusion. Promisingly, TTO/UF microcapsules with good stability can be used as a slow release vehicle for antibacterial application.
为了实现茶树油(TTO)的缓慢释放,将 TTO 通过聚合包封到脲醛(UF)树脂中。研究了固化时间和干燥条件对 TTO/UF 微胶囊粒径和 TTO 负载量的影响。结果表明,固化时间为 80min 的 TTO/UF 树脂微胶囊具有较窄的粒径分布和良好的壁覆盖率。在环境温度下干燥比在烘箱中干燥更有利于保持 TTO 含量。在固化时间为 80min 时,TTO 的负载量可以达到制备的微胶囊质量比例的 45wt.%,并且超过 90wt.%的负载 TTO 可以在大约 5 天内持续释放。此外,TTO/UF 微胶囊的释放动力学很好地符合 Ritger-Peppas 模型,呈现非菲克扩散。有希望的是,具有良好稳定性的 TTO/UF 微胶囊可用作抗菌应用的缓慢释放载体。