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Investigation of Carboxymethyl Cellulose (CMC) on Mechanical Properties of Cold Water Fish Gelatin Biodegradable Edible Films

机译:羧甲基纤维素(CMC)对冷水鱼明胶可生物降解可食膜力学性能的研究

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The tendency to use biocompatible packages, such as biodegradable films, is growing since they contain natural materials, are recyclable and do not cause environmental pollution. In this research, cold water fish gelatin and carboxymethyl cellulose were combined for use in edible films. Due to its unique properties, gelatin is widely used in creating gel, and in restructuring, stabilizing, emulsifying, and forming foam and film in food industries. This research for the first time modified and improved the mechanical properties of cold water fish gelatin films in combination with carboxymethyl cellulose. Cold water fish gelatin films along with carboxymethyl cellulose with concentrations of 0%, 5%, 10%, 20% and 50% were prepared using the casting method. The mechanical properties were tested by the American National Standard Method. Studying the absorption isotherm of the resulting composite films specified that the humidity of single-layer water decreased ( p < 0.05) and caused a reduction in the equilibrium moisture of these films. In the mechanical testing of the composite films, the tensile strength and Young’s modulus significantly increased and the elongation percent significantly decreased with the increase in the concentration of carboxymethyl cellulose. Considering the biodegradability of the films and the improvement of their mechanical properties by carboxymethyl cellulose, this kind of packaging can be used in different industries, especially the food industry, as an edible coating for packaging food and agricultural crops.
机译:由于使用生物相容性包装材料(例如可生物降解的薄膜)的趋势越来越大,因为它们包含天然材料,可回收利用且不会造成环境污染。在这项研究中,将冷水鱼明胶和羧甲基纤维素结合起来用于可食用薄膜。由于其独特的性能,明胶被广泛用于食品行业中的凝胶形成,结构化,稳定化,乳化以及形成泡沫和薄膜。这项研究首次改变和改善了冷水鱼明胶膜与羧甲基纤维素的机械性能。使用流延方法制备冷水鱼明胶膜以及浓度为0%,5%,10%,20%和50%的羧甲基纤维素。机械性能通过美国国家标准方法进行测试。研究所得复合膜的吸收等温线表明,单层水的湿度降低了(p <0.05),并导致这些膜的平衡水分降低。在复合膜的机械测试中,随着羧甲基纤维素浓度的增加,抗张强度和杨氏模量显着增加,伸长率显着降低。考虑到膜的生物可降解性和羧甲基纤维素对膜的机械性能的改善,这种包装可用于不同行业,尤其​​是食品工业,作为食品和农作物包装的食用涂料。

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