Faculty of Agronomy and Veterinary Medicine (FAMV), Graduate Program in Food Science and Technology, University of Passo Fundo, Passo Fundo, Brazil.
Faculty of Engineering and Architecture, Department of Chemical Engineering, University of Passo Fundo, Passo Fundo, Brazil.
J Sci Food Agric. 2019 Dec;99(15):6671-6679. doi: 10.1002/jsfa.9944. Epub 2019 Aug 31.
The technological advances in agriculture, driven by the increased demand for food attributed to population growth, have led to the search for technologies that allow greater control over the variables that interfere in crop yield. Several techniques stand out for optimizing yield capacity, including cultivation in a protected environment, mulching and low tunneling. To expand the use of these techniques, synthetic petroleum-based polymers are employed due to their low cost, easy processing, and lightness. However, they take a long time to degrade, and, since they are discarded at the end of each cycle of cultivation, end up accumulating in the environment causing irreversible damage.
The use of biodegradable films, made of starch and/or a protein source such as gelatin, has been studied as a promising alternative. Both stand out because of their film-forming ability, and because they come from abundant sources and are biodegradable.
This study aimed to review the current findings on starch and gelatin films that can be used as alternatives to conventional plastics in agricultural crops. © 2019 Society of Chemical Industry.
农业领域的技术进步,源于人口增长带来的对食物的需求增加,推动人们寻求能够更好地控制影响作物产量的变量的技术。几种技术因能够优化产量而脱颖而出,包括在保护环境中种植、覆盖和低隧道栽培。为了扩大这些技术的应用范围,人们使用了基于合成石油的聚合物,因为它们成本低、易于加工且重量轻。然而,它们需要很长时间才能降解,而且由于它们在每个种植周期结束时被丢弃,最终会在环境中积累,造成不可逆转的损害。
使用由淀粉和/或明胶等蛋白质来源制成的可生物降解薄膜已被研究为一种有前途的替代品。它们都因具有成膜能力,且来源丰富、可生物降解而脱颖而出。
本研究旨在综述可用于替代农业作物中传统塑料的淀粉和明胶薄膜的最新研究成果。 © 2019 英国化学学会。