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用具有抗氧化特性的月桂树修剪废弃物纳米纤维素增强的生物活性吸附壳聚糖气凝胶用于汉堡肉保鲜。

Bioactive Absorbent Chitosan Aerogels Reinforced with Bay Tree Pruning Waste Nanocellulose with Antioxidant Properties for Burger Meat Preservation.

作者信息

Rincón Esther, Espinosa Eduardo, Pinillos María, Serrano Luis

机构信息

BioPren Group (RNM-940), Chemical Engineering Department, Instituto Químico para la Energía y el Medioambiente (IQUEMA), Faculty of Science, Universidad de Córdoba, 14014 Cordoba, Spain.

出版信息

Polymers (Basel). 2023 Feb 9;15(4):866. doi: 10.3390/polym15040866.

Abstract

As a transition strategy towards sustainability, food packaging plays a crucial role in the current era. This, carried out in a biorefinery context of agricultural residues, involves not only obtaining desirable products but a comprehensive utilization of biomass that contributes to the circular bioeconomy. The present work proposes the preparation of bioactive absorbent food pads through a multi-product biorefinery approach from bay tree pruning waste (BTPW). In a first step, chitosan aerogels reinforced with lignocellulose and cellulose micro/nanofibers from BTPW were prepared, studying the effect of residual lignin on the material's properties. The presence of micro/nanofibers improved the mechanical performance (up to 60%) in addition to increasing the water uptake (42%) when lignin was present. The second step was to make them bioactive by incorporating bay leaf extract. The residual lignin in the micro/nanofibers was decisive, since when present, the release profiles of the extract were faster, reaching an antioxidant power of more than 85% after only 30 min. Finally, these bioactive aerogels were used as absorbent pads for fresh meat. With the use of the bioactive aerogels (with ≥2% extract), the meat remained fresh for 10 days as a result of delayed oxidation of the food during storage (20% metmyoglobin proportion).

摘要

作为迈向可持续发展的过渡策略,食品包装在当今时代发挥着至关重要的作用。在农业残留物的生物炼制背景下开展这一工作,不仅涉及获得理想产品,还包括对生物质的综合利用,这有助于循环生物经济。本研究提出通过多产品生物炼制方法,利用月桂树修剪废弃物(BTPW)制备具有生物活性的吸收性食品垫。第一步,制备了用BTPW中的木质纤维素和纤维素微/纳米纤维增强的壳聚糖气凝胶,研究了残留木质素对材料性能的影响。微/纳米纤维的存在除了在有木质素时增加吸水率(42%)外,还提高了机械性能(高达60%)。第二步是通过加入月桂叶提取物使其具有生物活性。微/纳米纤维中的残留木质素起了决定性作用,因为当存在时,提取物的释放曲线更快,仅30分钟后抗氧化能力就达到85%以上。最后,这些具有生物活性的气凝胶被用作鲜肉的吸收垫。使用具有生物活性的气凝胶(提取物含量≥2%)后,由于储存期间食品氧化延迟(高铁肌红蛋白比例为20%),肉在10天内保持新鲜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1571/9964863/456e18be9b65/polymers-15-00866-g001.jpg

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