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将洋葱皮升级再造,用于增强基于马铃薯加工浆液淀粉的气体阻隔性和抗氧化生物塑料。

Upcycling onion peels for enhanced gas barrier and antioxidant bioplastics based on starch from potato processing slurries.

作者信息

Vallejo Mariana, Esteves Beatriz, Carvalho Pedro, Coimbra Manuel A, Oliveira Martinho, Ferreira Paula, Gonçalves Idalina

机构信息

CICECO - Aveiro Institute of Materials, Department of Materials and Ceramic Engineering, University of Aveiro, 3810-193, Aveiro, Portugal.

CICECO - Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, 3810-193, Aveiro, Portugal.

出版信息

Waste Manag. 2025 Aug;205:115005. doi: 10.1016/j.wasman.2025.115005. Epub 2025 Jul 12.

Abstract

The upcycling of food waste into high-value materials presents a key opportunity for sustainable waste management. While onion peel (OP) extracts have been investigated as additives for bioplastics, this study explores the direct incorporation of whole powdered OP (5-20 wt%) into starch-based films, eliminating extraction steps and fully valorizing this agro-industrial by-product. Using starch recovered from potato processing slurries as the polymeric matrix, the influence of OP on film structure, mechanical performance, water resistance, gas permeability, and antioxidant activity was evaluated. Chemical analysis of OP revealed a composition of 47% alcohol insoluble compounds (mainly pectin and cellulose), 12% alcohol soluble matter (primarily glucose-based carbohydrates), 6% lipids, 2%proteins, 5% gallic acid equivalents, and 27% ashes. The direct incorporation of powdered OP resulted in natural pigmentation, producing transparent films with an orangish hue. This approach enhances the aesthetic properties of films while eliminating the need for artificial dyes, contributing to a more sustainable product design. The developed bioplastics exhibited enhanced mechanical properties and improved water resistance, making them attractive for sustainable packaging applications. At OP concentrations above 10 wt%, Young's modulus increased from 1214 MPa to 1496 MPa, while tensile strength and elongation at break decreased from 31.4 MPa to 24.6 MPa and from 4.5% to 2.1%, respectively. Water contact angles increased from 75° up to 87°, and water vapor permeability was reduced by up to 60%, improving moisture resistance. Importantly, OP incorporation did not compromise oxygen (O), carbon dioxide (CO), or nitrogen (N) barrier properties and imparted significant antioxidant activity, with 20 wt% OP-based films inhibiting 93% of the 2.2'-azinobis-(3-ethylbenzothiazoline-6-sulfonic) acid radical cation (ABTS) after 6 h. This study presents an innovative waste-to-resource strategy that eliminates processing waste, aligns with circular economy principles, and demonstrates the first use of whole OP as a multifunctional additive in starch-based bioplastics. By replacing conventional extraction-based approaches, this method enhances material sustainability while promoting a scalable, zero-waste approach to packaging development.

摘要

将食物垃圾升级转化为高价值材料是可持续废物管理的一个关键机遇。虽然洋葱皮(OP)提取物已被研究用作生物塑料的添加剂,但本研究探索将整个洋葱皮粉末(5-20重量%)直接掺入淀粉基薄膜中,省去提取步骤并充分利用这种农业工业副产品。以从马铃薯加工浆中回收的淀粉作为聚合物基质,评估了OP对薄膜结构、机械性能、耐水性、气体渗透性和抗氧化活性的影响。对OP的化学分析显示其组成为47%的醇不溶性化合物(主要是果胶和纤维素)、12%的醇溶性物质(主要是基于葡萄糖的碳水化合物)、6%的脂质、2%的蛋白质、5%的没食子酸当量和27%的灰分。直接掺入OP粉末导致天然色素沉着,制成具有橙色调的透明薄膜。这种方法在消除对人工染料需求的同时增强了薄膜的美学性能,有助于实现更可持续的产品设计。所开发的生物塑料表现出增强的机械性能和改善的耐水性,使其在可持续包装应用中具有吸引力。在OP浓度高于10重量%时,杨氏模量从1214兆帕增加到1496兆帕,而拉伸强度和断裂伸长率分别从31.4兆帕降至24.6兆帕以及从4.5%降至2.1%。水接触角从75°增加到87°,水蒸气透过率降低高达60%,提高了防潮性。重要的是,掺入OP不会损害氧气(O)、二氧化碳(CO)或氮气(N)的阻隔性能,并赋予显著的抗氧化活性,含20重量%OP的薄膜在6小时后抑制了93%的2,2'-联氮双(3-乙基苯并噻唑啉-6-磺酸)自由基阳离子(ABTS)。本研究提出了一种创新的废物转化为资源的策略,该策略消除了加工废物,符合循环经济原则,并展示了首次将整个OP用作淀粉基生物塑料中的多功能添加剂。通过取代传统的基于提取的方法,这种方法提高了材料的可持续性,同时促进了一种可扩展的、零废物的包装开发方法。

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