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首页> 外文期刊>Nanomedicine research journal. >Characterization of a new biodegradable edible film based on Sago Starch loaded with Carboxymethyl Cellulose nanoparticles
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Characterization of a new biodegradable edible film based on Sago Starch loaded with Carboxymethyl Cellulose nanoparticles

机译:基于西米淀粉的新型可降解可食用膜的表征,该膜负载有羧甲基纤维素纳米颗粒

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Objective(s):?Biodegradable film is widely used because it is free from synthetic substances and does not lead to environment pollution. This study aimed to prepare and characterize biodegradable sago starch films loaded with Carboxymethyl Cellulose nanoparticles. Methods:?Sago starch films were prepared and plasticized with sorbitol/ glycerol by the casting method. Nano Carboxymethyl Cellulose with 0%, 1%, 2%, 3%, 4% and 5% (w/w) was added to the films before casting them. The effects of the addition of nanoparticles were measured on mechanical properties, water absorption capacity, density and heat sealability. Results:?In mechanical test of the combined films, by increasing of CMC nanoparticles concentration significantly (P0.05) increased tensile strength and Young Modulus and elongation prameter showed significant (P0.05) reduction from 17.69 to 15.39. The seal strength for the sago film was increased by incorporating a low percentage of nano Carboxymethyl Cellulose and enhanced the physicochemical properties and heat sealability of sago films. Conclusions:?Considering biodegradability of the edible films and improvement of their mechanical properties by CMC nanoparticles, they can be utilized in different industries, particularly in food industry, as an edible coating for packaging food and pharmaceutical products. With regard to its properties such as cost saving, biodegradability and mechanical properties when percentage of CMC nanoparticles increased can found a position among packaging materials.
机译:目标:可生物降解薄膜被广泛使用,因为它不含合成物质并且不会导致环境污染。这项研究旨在制备和表征载有羧甲基纤维素纳米颗粒的可生物降解的西米淀粉薄膜。方法:制备西米淀粉薄膜,流延法用山梨糖醇/甘油增塑。在流延薄膜之前,将具有0%,1%,2%,3%,4%和5%(w / w)的纳米羧甲基纤维素添加到薄膜中。测量了添加纳米颗粒对机械性能,吸水能力,密度和热封性的影响。结果:在复合膜的机械测试中,通过增加CMC纳米颗粒浓度(P <0.05),可显着提高抗拉强度,而杨氏模量和伸长率比值从17.69降至15.39显着(P <0.05)。通过掺入低百分比的纳米羧甲基纤维素可提高西米膜的密封强度,并增强了西米膜的理化性质和热封性。结论:考虑到可食用薄膜的生物降解性和CMC纳米颗粒改善其机械性能,它们可用于不同行业,特别是在食品工业中,作为包装食品和药品的可食用涂料。关于其性能,例如节省成本,生物降解性和机械性能(当CMC纳米颗粒的百分比增加时),可以在包装材料中找到位置。

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