Puscaselu Roxana Gheorghita, Lobiuc Andrei, Gutt Gheorghe
Faculty of Medicine and Biological Sciences, Stefan Cel Mare University of Suceava, 720229 Suceava, Romania.
Faculty of Food Engineering, Stefan Cel Mare University of Suceava, 720229 Suceava, Romania.
Gels. 2022 Aug 14;8(8):505. doi: 10.3390/gels8080505.
The need to replace conventional, usually single-use, packaging materials, so important for the future of resources and of the environment, has propelled research towards the development of packaging-based on biopolymers, fully biodegradable and even edible. The current study furthers the research on development of such films and tests the modification of the properties of the previously developed biopolymeric material, by adding 10, respectively 20% / essential oils of lemon, grapefruit, orange, cinnamon, clove, mint, ginger, eucalypt, and chamomile. Films with a thickness between 53 and 102 µm were obtained, with a roughness ranging between 147 and 366 nm. Most films had a water activity index significantly below what is required for microorganism growth, as low as 0.27, while all essential oils induced microbial growth reduction or 100% inhibition. Tested for the evaluation of physical, optical, microbiological or solubility properties, all the films with the addition of essential oil in the composition showed improved properties compared to the control sample.
替换传统的、通常为一次性使用的包装材料对于资源和环境的未来至关重要,这推动了对基于生物聚合物的包装材料的研究,这种材料完全可生物降解甚至可食用。当前的研究进一步推进了此类薄膜的开发研究,并通过分别添加10%和20%的柠檬、葡萄柚、橙子、肉桂、丁香、薄荷、生姜、桉树叶和洋甘菊的精油来测试对先前开发的生物聚合材料性能的改性。获得了厚度在53至102微米之间的薄膜,粗糙度在147至366纳米之间。大多数薄膜的水分活度指数显著低于微生物生长所需的值,低至0.27,而所有精油都能减少微生物生长或实现100%抑制。在对物理、光学、微生物或溶解性等性能进行评估测试时,与对照样品相比,所有添加了精油成分的薄膜均表现出性能改善。