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首页> 外文期刊>Journal of Applied Polymer Science >Antioxidant films based on gelatin capsules and minimally processed beet root (Beta vulgaris L. var. Conditiva) residues
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Antioxidant films based on gelatin capsules and minimally processed beet root (Beta vulgaris L. var. Conditiva) residues

机译:基于明胶胶囊和最少加工的甜菜根(Beta vulgaris L. var。Conditiva)残留物的抗氧化膜

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摘要

Biocomposite films were prepared by incorporating different concentrations of beet root residue powder (BRP) (2, 4, 8, and 12 g BRP/100 g water) into films based on residues of gelatin capsules (GCR) (40 g GCR/100 g water). Control films had no BRP added. A complete mechanical, physicochemical, barrier, optical, and antioxidant characterization of all films was performed. Among all the films considered, BRP12 was found to present the most adequate properties and was further investigated. SEM micrographs showed that BRP12 presented a less homogeneous surface in comparison with the control film, but they showed similar thermal stability. After 15 days of soil degradation, the films lost over 75% of weight. The films were effective on protecting sunflower oil from primary oxidation process, and BRP12 showed higher protection than control film. Therefore, this study suggests that the formulated films could act as promising antioxidant materials and contribute to environmentally friendly technologies. (C) 2015 Wiley Periodicals, Inc.
机译:通过将不同浓度的甜菜根渣粉(BRP)(2、4、8和12 g BRP / 100 g水)掺入基于明胶胶囊(GCR)(40 g GCR / 100 g)残留物的薄膜中来制备生物复合膜。水)。对照膜未添加BRP。对所有薄膜进行了完整的机械,物理化学,阻挡层,光学和抗氧化剂表征。在所有考虑的薄膜中,发现BRP12具有最充分的性能,并进行了进一步研究。 SEM显微照片显示,与对照膜相比,BRP12呈现出较不均匀的表面,但它们显示出相似的热稳定性。土壤降解15天后,薄膜的重量减少了75%以上。该膜可有效保护葵花油免于初次氧化,BRP12的保护性优于对照膜。因此,这项研究表明,配制的薄膜可作为有前途的抗氧化剂材料,并有助于环保技术。 (C)2015年Wiley Periodicals,Inc.

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