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Multi-Functional Edible Film with Excellent UV Barrier Performance and Accurate Instant Ion Printing Capability

机译:多功能可食用膜具有优良的紫外线即时离子屏障性能和准确打印功能

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摘要

Using natural biomass resources to synthesize degradable membrane materials, which may replace traditional plastics, is one of the strategies that can reduce pollution. Herein, a mechanochemical method for preparation of degradable biofilm tannic acid-modified microfibrillated cellulose (TA@MFC)-G is proposed. The method involves modification of a microfibrillated cellulose (MFC) with plant polyphenol (tannic acid), followed by complexation with gelatin in an aqueous solution. Compared with pure gelatin film, MFC film has higher intrinsic crystallinity and thermal stability. Due to the synergistic effect of tannin and MFC, the mechanical strength and flexibility of the films are improved; its tensile strength is higher than 75 MPa and its elongation at break is as high as 13%. The films also have high UV blocking ability. Finally, the films are printed using Fe3+ ions or conventional ink, from which it is observed that the pattern printed using Fe3+ ions has higher solvent resistance and water repellency compared to that printed using conventional ink. This biodegradable film may have promising applications as food packaging materials or in other industries.
机译:使用天然生物质资源合成可降解膜材料,这可能会取代传统的塑料,是一种策略可以减少污染。机械化学的方法制备可降解生物膜单宁酸改性microfibrillated纤维素(TA@MFC) - g建议。microfibrillated纤维素(MFC)与植物多酚(鞣酸),紧随其后的是络合与明胶在水溶液中。与纯凝胶膜相比,MFC电影更高的内在结晶度和热稳定。丹宁酸和MFC,机械强度和电影的灵活性是改善;抗拉强度高于75 MPa和它断裂伸长率是高达13%。也有高紫外线屏蔽能力。电影使用Fe3 +离子或传统的印刷墨水,是观察到的模式印刷使用Fe3 +离子具有较高的溶剂阻力和斥水性相比使用传统的油墨印刷。可降解薄膜可能会有前途的应用程序或在食品包装材料其它行业。

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