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Preparation, characterization and mechanical properties of k-Carrageenan/SiO2 nanocomposite films for antimicrobial food packaging

机译:K-carrageenanan / SiO2纳米复合膜的制备,表征和力学性能用于抗微生物食品包装

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Kappa-Carrageenan (KCG) films have been formulated as a packaging material. This study has been conducted to investigate the effect of incorporating nanoparticles inside the KCG matrix, with the aim of enhancing the mechanical and antimicrobial properties of KCG for reinforcement purposes. Films were prepared by solution casting technique with 1.0, 3.0 and 5.0 wt% of nano-filler content taking neat KCG as the reference for the study. Structural characterizations of the prepared nanocomposite films were carried out by Fourier transform infrared, scanning electron microscope (SEM) and transmission electron microscope (TEM) techniques. SEM and TEM showed homogeneous dispersion of nanoparticles in the KCG matrix. The tensile strength increased significantly by introducing the nanoparticles into the KCG matrix, in which films have greater tensile strength (53.9 MPa) when compared to the KCG polymer (46.8 MPa). The moisture uptake (MU) of nanocomposites decreased when was introduced into the polymer matrix. The barrier property of the prepared KCG-based nanocomposite films decreased oxygen transmission rate with loading of different wt% of . nanoparticle-loaded films produced higher zones of inhibition against Staphylococcus aureus and Escherichia coli strains compared to polymer film. This study was intended to find the applications for KCG films containing nanoparticles to enhance the shelf-life of foods in the form of biodegradable wrapper.
机译:Kappa-carrageenan(KCG)薄膜已被配制为包装材料。已经进行了该研究以研究纳入KCG基质内纳米颗粒的效果,目的是提高KCG的机械和抗微生物性能以进行增强目的。通过溶液铸造技术制备薄膜,含有1.0,3.0和5.0wt%的纳米填充物含量以整洁的KCG作为研究的参考。由傅里叶变换红外,扫描电子显微镜(SEM)和透射电子显微镜(TEM)技术进行制备的纳米复合膜的结构表征。 SEM和TEM显示纳米颗粒在KCG基质中的均匀分散。通过将纳米颗粒引入KCG基质中的拉伸强度显着增加,其中与KCG聚合物(46.8MPa)相比,薄膜具有更大的拉伸强度(53.9MPa)。将纳米复合材料的水分吸收(MU)降低,当被引入聚合物基质时。所制备的基于KCG的纳米复合膜的阻隔性降低了氧传输速率,载荷不同的wt%。与聚合物膜相比,纳米粒子加载膜对葡萄球菌和大肠杆菌菌株产生了较高的抑制区域。本研究旨在找到含有纳米颗粒的KCG膜的应用,以增强可生物降解包装物的形式的食物的保质期。

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