Mwita Chacha Saidi, Muhammad Riaz, Nettey-Oppong Ezekiel Edward, Enkhbayar Doljinsuren, Ali Ahmed, Ahn Jiwon, Kim Seong-Wan, Seok Young-Seek, Choi Seung Ho
Department of Biomedical Engineering, Yonsei University, Wonju 26493, Republic of Korea.
Department of Electrical Engineering, Sukkur IBA University, Sukkur 65200, Pakistan.
Materials (Basel). 2024 Jul 25;17(15):3670. doi: 10.3390/ma17153670.
Waste from non-degradable packaging materials poses a serious environmental risk and has led to interest in developing sustainable bio-based packaging materials. Sustainable packaging materials have been made from diverse naturally derived materials such as bamboo, sugarcane, and corn starch. In this study, we made a sustainable packaging film using chitosan extracted from the biomass of yellow mealworm () shell waste. The extracted chitosan was used to create films, cross-linked with citric acid (CA) and with the addition of glycerol to impart flexibility, using the solvent casting method. The successful cross-linking was evaluated using Fourier-Transform Infrared (FTIR) analysis. The CA cross-linked mealworm chitosan (CAMC) films exhibited improved water resistance with moisture content reduced from 19.9 to 14.5%. Improved barrier properties were also noted, with a 28.7% and 10.2% decrease in vapor permeability and vapor transmission rate, respectively. Bananas were selected for food preservation, and significant changes were observed over a duration of 10 days. Compared to the control sample, bananas packaged in CAMC pouches exhibited a lesser loss in weight because of excellent barrier properties against water vapor. Moreover, the quality and texture of bananas packaged in CAMC pouch remained intact over the duration of the experiment. This indicates that adding citric acid and glycerol to the chitosan structure holds promise for effective food wrapping and contributes to the enhancement of banana shelf life. Through this study, we concluded that chitosan film derived from mealworm biomass has potential as a valuable resource for sustainable packaging solutions, promoting the adoption of environmentally friendly practices in the food industry.
不可降解包装材料产生的废弃物带来了严重的环境风险,这引发了人们对开发可持续生物基包装材料的兴趣。可持续包装材料由多种天然衍生材料制成,如竹子、甘蔗和玉米淀粉。在本研究中,我们利用从黄粉虫()壳废弃物生物质中提取的壳聚糖制备了一种可持续包装薄膜。提取的壳聚糖用于制备薄膜,采用溶液浇铸法,与柠檬酸(CA)交联并添加甘油以赋予柔韧性。使用傅里叶变换红外(FTIR)分析评估交联是否成功。CA交联的黄粉虫壳聚糖(CAMC)薄膜的耐水性有所提高,水分含量从19.9%降至14.5%。还观察到阻隔性能有所改善,透气率和透湿率分别降低了28.7%和10.2%。选择香蕉进行食品保鲜,在10天的时间里观察到了显著变化。与对照样品相比,用CAMC小袋包装的香蕉由于对水蒸气具有优异的阻隔性能,重量损失较小。此外,在实验期间,用CAMC小袋包装的香蕉的质量和质地保持完好。这表明在壳聚糖结构中添加柠檬酸和甘油有望实现有效的食品包装,并有助于延长香蕉的保质期。通过本研究,我们得出结论,源自黄粉虫生物质的壳聚糖薄膜作为可持续包装解决方案的宝贵资源具有潜力,可促进食品行业采用环保做法。