Green Synthesis of Antioxidant and Degradable Biomass-Based Preservative Films for Efficient Strawberry Preservation

IF 2.6 Q2 FOOD SCIENCE & TECHNOLOGY
Danya Zhan, Qiongfen Yu*, Ming Li, Ying Liu, Shengnan Sun, Rong Zhu, Run Zhang, Zhongfan Mo and Runfang Ma, 
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Abstract

Utilizing biological resources facilitates alleviating energy shortage and environmental pollution problems. This work aims to develop edible packaging material that performs well and can be used for fresh fruit preservation. Tea polyphenol (TP) was successfully added to a composite-forming solution of tobacco stem cellulose (TSC) and xanthan gum (XG) to synthesize greenly the TSC/XG/TP composite film. Subsequently, the effects of TP dosage on the physicochemical and functional properties of TSC/XG/TP composite films were systematically evaluated. Results showed that the tensile strength (7.89 MPa) and elongation at break (5.27%) were maximums when the optimum TP dosage of 0.4% composite film was achieved. In addition, water vapor and oxygen barrier properties were increased by 159.57 and 7.50%, respectively, and the antioxidant activity was also enhanced by 251.59%. The composite film could maintain the strawberries’ appearance excellently and effectively inhibit color deterioration, thereby delaying postharvest decay, weight loss, and softening. It naturally follows that strawberries’ freshness is prolonged up to 14 days. Practical applications of composite films in preserving fresh strawberries have also shown positive results, making it possible as a potential food packaging material.

Abstract Image

绿色合成抗氧化可降解草莓保鲜膜的研究
利用生物资源有助于缓解能源短缺和环境污染问题。本研究旨在开发性能良好、可用于新鲜水果保鲜的可食用包装材料。在烟草茎纤维素(TSC)和黄原胶(XG)的复合溶液中加入茶多酚(TP),成功合成了TSC/XG/TP绿色复合膜。随后,系统评价了TP用量对TSC/XG/TP复合膜理化和功能特性的影响。结果表明,当 TP 的最佳用量为 0.4% 时,复合薄膜的拉伸强度(7.89 兆帕)和断裂伸长率(5.27%)达到最大值。此外,水蒸气阻隔性和氧气阻隔性分别提高了 159.57% 和 7.50%,抗氧化活性也提高了 251.59%。复合膜能很好地保持草莓的外观,有效抑制草莓的色泽劣变,从而延缓草莓采后腐烂、减重和软化。草莓的保鲜期自然也就延长到了 14 天。复合薄膜在保存新鲜草莓方面的实际应用也取得了积极成果,使其成为一种潜在的食品包装材料成为可能。
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CiteScore
3.30
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