Department of Engineering 'Enzo Ferrari', University of Modena Reggio Emilia, Modena, Italy.
Department of Life Sciences (Agro-Food Science Area), BIOGEST - SITEIA Interdepartmental Centre, University of Modena and Reggio Emilia, Reggio Emilia, Italy.
J Sci Food Agric. 2021 Aug 30;101(11):4506-4513. doi: 10.1002/jsfa.11091. Epub 2021 Feb 12.
This work evaluated the performances of protein-based bioplastics obtained from black soldier fly (Hermetia illucens) prepupae. Protein films were synthesized by film casting, using both the whole proteins and their soluble fraction at pH = 10. The effects of glycerol as a plasticizer and of citric acid as a mild crosslinker on film properties were also evaluated.
Films obtained using the soluble protein fraction were the strongest, as well as the most homogeneous and transparent ones. Protein mild crosslinking improved film tensile properties, especially in films obtained with the whole protein fraction. Non-crosslinked samples had a high affinity with water while crosslinking almost eliminated the ability of films to absorb water. All protein-based films proved to be effective barriers to red light (transmittance less than 2%).
Bioplastics derived from black soldier fly prepupae may find applications in the agricultural sector (biodegradable pots, mulching films, utensils) and deserve to be tested for food and non-food packaging. © 2021 Society of Chemical Industry.
本工作评估了来源于黑水虻(Hermetia illucens)预蛹的蛋白质基生物塑料的性能。通过薄膜浇铸法,使用 pH 值为 10 时的全蛋白质及其可溶部分来合成蛋白质薄膜。还评估了甘油作为增塑剂和柠檬酸作为温和交联剂对薄膜性能的影响。
使用可溶蛋白部分获得的薄膜具有最强的机械性能,且最均匀、最透明。蛋白质温和交联改善了薄膜的拉伸性能,尤其是使用全蛋白部分获得的薄膜。未交联的样品对水具有高亲和力,而交联几乎消除了薄膜吸水的能力。所有基于蛋白质的薄膜均被证明对红光具有有效阻隔作用(透光率小于 2%)。
来源于黑水虻预蛹的生物塑料可在农业领域(可生物降解的盆、覆盖膜、器具)中得到应用,值得进一步测试用于食品和非食品包装。 © 2021 英国化学学会。