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Development of environment-friendly bio-based film with improved performance for food preservation using dialdehyde
Xin Zhang1, Jiawei Li1, Hongyan Wang2
1Southwest Forestry University, Yunnan Key Laboratory of Wood Adhesives and Glued Products, Kunming, Yunnan, PR China.
Abstract:
Developing environment-friendly films by utilizing renewable bio-resource materials to substitute petroleum-based ones is regarded as an effective approach for addressing white pollution and its associated hazards. In this work, a redox system consisting of ascorbic acid/hydrogen peroxide (AA/H2O2) was established to promote the graft copolymerization of konjac flour (KF) and dialdehyde starch (DAS) for the preparation of bio-based films. The results indicated that the overall performance of the film was significantly improved after grafting DAS onto KF. Specifically, when the DAS content was 25 % of the KF weight, the film presented the optimal properties: a moisture content of 10.2 %, a water contact angle of 87.17°, a tensile strength of 33.08 MPa and a biodegradation rate of 93.16 %. Additionally, the weight loss of banana in a 7-day experiment was only 15.67 %, taking the film as a preservative material. Meanwhile, the film's dense and uniform structure also enhances its thermal properties.

