Ediyilyam Sreelekha, George Bini, Shankar Sarojini Sharath, Dennis Thomas Thuruthiyil, Wacławek Stanisław, Černík Miroslav, Padil Vinod V T
Department of Chemistry, School of Physical Sciences, Central University of Kerala, Kasaragod 671316, Kerala, India.
Department of Biochemistry and Molecular Biology, School of Biological Sciences, Central University of Kerala, Kasaragod 671316, Kerala, India.
Polymers (Basel). 2021 May 21;13(11):1680. doi: 10.3390/polym13111680.
The food packaging industry explores economically viable, environmentally benign, and non-toxic packaging materials. Biopolymers, including chitosan (CH) and gelatin (GE), are considered a leading replacement for plastic packaging materials, with preferred packaging functionality and biodegradability. CH, GE, and different proportions of silver nanoparticles (AgNPs) are used to prepare novel packaging materials using a simple solution casting method. The functional and morphological characterization of the prepared films was carried out by using Fourier transform infrared spectroscopy (FTIR), UV-Visible spectroscopy, and scanning electron microscopy (SEM). The mechanical strength, solubility, water vapor transmission rate, swelling behavior, moisture retention capability, and biodegradability of composite films were evaluated. The addition of AgNPs to the polymer blend matrix improves the physicochemical and biological functioning of the matrix. Due to the cross-linking motion of AgNPs, it is found that the swelling degree, moisture retention capability, and water vapor transmission rate slightly decrease. The tensile strength of pure CH-GE films was 24.4 ± 0.03, and it increased to 25.8 ± 0.05 MPa upon the addition of 0.0075% of AgNPs. The real-time application of the films was tested by evaluating the shelf-life existence of carrot pieces covered with the composite films. The composite film containing AgNPs becomes effective in lowering bacterial contamination while comparing the plastic polyethylene films. In principle, the synthesized composite films possessed all the ideal characteristics of packaging material and were considered biodegradable and biocompatible food packaging material and an alternate option for petroleum-based plastics.
食品包装行业正在探索经济可行、环境友好且无毒的包装材料。包括壳聚糖(CH)和明胶(GE)在内的生物聚合物被认为是塑料包装材料的主要替代品,具有理想的包装功能和生物降解性。利用简单的溶液浇铸法,使用CH、GE和不同比例的银纳米颗粒(AgNP)来制备新型包装材料。通过傅里叶变换红外光谱(FTIR)、紫外可见光谱和扫描电子显微镜(SEM)对制备的薄膜进行功能和形态表征。评估了复合薄膜的机械强度、溶解性、水蒸气透过率、溶胀行为、保湿能力和生物降解性。在聚合物共混物基体中添加AgNP可改善基体的物理化学和生物学功能。由于AgNP的交联作用,发现溶胀度、保湿能力和水蒸气透过率略有下降。纯CH-GE薄膜的拉伸强度为24.4±0.03,添加0.0075%的AgNP后,拉伸强度提高到25.8±0.05MPa。通过评估覆盖有复合薄膜的胡萝卜片的货架期来测试薄膜的实际应用。与塑料聚乙烯薄膜相比,含有AgNP的复合薄膜在降低细菌污染方面很有效。原则上,合成的复合薄膜具备包装材料的所有理想特性,被认为是可生物降解和生物相容的食品包装材料,也是石油基塑料的替代选择。