Shlosman Koranit, Rein Dmitry M, Shemesh Rotem, Cohen Yachin
The Interdepartmental Program in Polymer Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.
R&D and Customer Service Department Carmel Olefins Ltd., Haifa 31014, Israel.
Polymers (Basel). 2024 May 17;16(10):1422. doi: 10.3390/polym16101422.
Efforts to tap into the broad antimicrobial, insecticidal, and antioxidant activities of essential oils (EOs) are limited due to their strong odor and susceptibility to light and oxidation. Encapsulation of EOs and subsequent drying overcome these limitations and extend their applications. This study characterized freeze-dried (lyophilized) emulsions of eugenol (EU) and thymol (TY) EOs, encapsulated by chemically unmodified cellulose, a sustainable and low-cost resource. High-resolution scanning electron microscopy showed successful lyophilization. While the observed "flake-like" structure of the powders differed significantly from that of the emulsified microcapsules, useful properties were retained. Fourier transform infrared spectroscopy confirmed the presence of EOs in their corresponding powders and thermo-gravimetric analysis demonstrated high encapsulation efficiency (87-88%), improved thermal stability and resistance to evaporation, and slow EO release rates in comparison to their free forms. The lightweight and low-cost cellulose encapsulation, together with the results showing retained properties of the dried powder, enable the use of EOs in applications requiring high temperatures, such as EO incorporation into polymer films, that can be used to protect agricultural crops from microbial infections.
由于精油(EOs)具有强烈气味且易受光照和氧化影响,挖掘其广泛的抗菌、杀虫和抗氧化活性的努力受到限制。精油的包封及随后的干燥克服了这些限制并扩展了其应用。本研究对由化学未改性纤维素(一种可持续且低成本的资源)包封的丁香酚(EU)和百里香酚(TY)精油的冻干乳液进行了表征。高分辨率扫描电子显微镜显示冻干成功。虽然观察到的粉末“片状”结构与乳化微胶囊的结构有显著差异,但保留了有用的特性。傅里叶变换红外光谱证实了相应粉末中存在精油,热重分析表明包封效率高(87 - 88%),热稳定性提高,抗蒸发能力增强,与游离形式相比,精油释放速率缓慢。轻质且低成本的纤维素包封,以及干燥粉末保留特性的结果,使得精油能够用于需要高温的应用中,例如将精油掺入聚合物薄膜中,可用于保护农作物免受微生物感染。