Physicochemical Properties of Films from Semirefined Carrageenan/TiO2 Integrated with Cinnamaldehyde Pickering Emulsion for Active Food Packaging

Khadijah Husna Abd Hamid, A. Ajit, A. A. Asmawi, M. Arzmi, Nurul Aini Mohd Azman
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Abstract

Plastic waste has become a significant global environmental issue, particularly in the context of food packaging. In the present study, active packaging films were fabricated by integrating chitosan-stabilized cinnamaldehyde Pickering emulsion (PE) and titanium dioxide particles (TNPs) into the semirefined carrageenan (SRC) matrix. The impact of cinnamaldehyde PE and TNPs on the physical and mechanical attributes of the SRC films was explored. The integration of TNPs (3%, w/v) and 0.5% cinnamaldehyde PE revealed promising mechanical properties, with 21.86 MPa tensile strength and 34.21% of elongation at break value. The inclusion of TNPs and cinnamaldehyde PE led to enhancements in the moisture content and water solubility of the SRC films. The thermal stability of the film was marginally increased with 0.5% cinnamaldehyde PE. Scanning electron microscopy (SEM) revealed a uniform distribution of active compounds in the SRC matrix. The study findings highlight the potential of cinnamaldehyde PE and TNPs in active food packaging films as eco-friendly alternatives to conventional petrochemical-derived plastics in food packaging.
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用于活性食品包装的半精制卡拉胶/二氧化钛薄膜与肉桂醛皮克林乳液的物理化学特性
塑料垃圾已成为一个重要的全球环境问题,尤其是在食品包装方面。在本研究中,通过将壳聚糖稳定的肉桂醛皮克林乳液(PE)和二氧化钛颗粒(TNPs)整合到半固定卡拉胶(SRC)基质中,制造出了活性包装膜。研究探讨了肉桂醛聚乙烯和 TNPs 对 SRC 薄膜的物理和机械属性的影响。TNPs(3%,w/v)和 0.5% 肉桂醛聚乙烯的结合显示出良好的机械性能,拉伸强度为 21.86 兆帕,断裂伸长率为 34.21%。TNPs 和肉桂醛 PE 的加入提高了 SRC 薄膜的含水量和水溶性。加入 0.5% 肉桂醛 PE 后,薄膜的热稳定性略有提高。扫描电子显微镜(SEM)显示了活性化合物在 SRC 基质中的均匀分布。研究结果凸显了肉桂醛聚乙烯和 TNPs 在活性食品包装薄膜中作为传统石化塑料在食品包装中的环保替代品的潜力。
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