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Novel antimicrobial nano coated polypropylene based materials for food packaging systems

机译:用于食品包装系统的新型抗菌纳米涂层聚丙烯基材料

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Modern days, in food industry significant attention has paid to secure food quality, safety and shelf-life. Microbial growth is the major cause of food spoilage which reduces shelf life of food. Food packaging plays a major role in preserving food and maintaining the quality. Food packaging combines with antimicrobial activities are now in demand in food industry due to growing concerns on food quality. As some inorganic nano materials show extensive antimicrobial activity incorporation of them into food packaging exhibit enhanced food quality. These studies have been focused on establishing methods for preparation of antibacterial nano coating for polymer based food packaging. Nanosilver has widely been used in antimicrobial films. For this study nanosilver based polyvinyl alcohol coating was prepared on polypropylene food packaging material. Ultra Violet rays were used to contact on the polymer surface in order to enhance the adherence of nano coating to the polypropylene surface. Load required to peel off the nano coating and wetting angles of the modified surface was measured to determine the optimum Ultra Violet rays exposure time. Thermo Gravimetric Analysis (TGA) was used to optimize the crosslinking of the Coating. Presence of nanosilver particles in the developed coating was confirmed by Scanning Electron Microscopy (SEM). The coating was tested against Escherichia coli. The novel nanosilver coated polypropylene food packaging showed significant the antibacterial activity. This developed antimicrobial product can be used to protect the food and reduce the waste in near future.
机译:如今,在食品工业中,已经非常重视确保食品质量,安全性和保质期。微生物的生长是食物变质的主要原因,这会缩短食物的保质期。食品包装在保存食品和保持质量方面起着重要作用。由于对食品质量的日益关注,食品包装中结合了抗菌活性的食品现在已成为食品行业的需求。由于一些无机纳米材料显示出广泛的抗微生物活性,将其掺入食品包装中显示出增强的食品质量。这些研究集中于建立用于聚合物基食品包装的抗菌纳米涂层的制备方法。纳米银已被广泛用于抗菌膜中。对于本研究,在聚丙烯食品包装材料上制备了基于纳米银的聚乙烯醇涂料。为了增强纳米涂层对聚丙烯表面的附着力,使用紫外线在聚合物表面上进行接触。测量剥离纳米涂层所需的载荷和改性表面的润湿角,以确定最佳的紫外线曝光时间。热重分析(TGA)用于优化涂层的交联。通过扫描电子显微镜(SEM)证实了显影的涂层中纳米银颗粒的存在。该涂层针对大肠杆菌进行了测试。新型纳米银涂层聚丙烯食品包装显示出显着的抗菌活性。这种开发的抗菌产品可在不久的将来用于保护食品并减少浪费。

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