Bhatlawande Aboli R, Ghatge Pravin U, Shinde Gopal U, Anushree R K, Patil Sagar D
Department of Food Chemistry & Nutrition, CFT, VNMKV, Parbhani, India.
PI-NAHEP-DFSRDA-ICAR, VNMKV, Parbhani, India.
Food Sci Biotechnol. 2023 Dec 28;33(5):1075-1091. doi: 10.1007/s10068-023-01486-9. eCollection 2024 Apr.
This review examines how biosensors, the Internet of Things (IoT), and nano materials can revolutionize food packaging. It highlights the limitations of traditional packaging, particularly concerning barrier properties and food quality monitoring. The paper aims to provide specific insights into the potential of these technologies. Biosensors enable real-time monitoring and spoilage detection, ensuring safer products, while IoT enhances traceability and transparency in the supply chain, leading to reduced material waste, energy waste, and operational inefficiencies, ultimately improving efficiency. Nano materials offer improved barrier capabilities, strength, and antimicrobial properties, enhancing product quality and sustainability. The review paper also discusses the promising future of smart food packaging, driven by technological advancements and consumer demand for safer and eco-friendly products. However, it acknowledges the challenges related to regulations, sustainability, and consumer acceptance that need to be addressed for widespread adoption. In conclusion, this paper demonstrates how smart food packaging with biosensors, IoT, and nano materials can transform the food industry by overcoming traditional limitations and meeting evolving consumer needs, providing improved food safety, quality, and sustainability.
本综述探讨了生物传感器、物联网(IoT)和纳米材料如何能够彻底改变食品包装。它突出了传统包装的局限性,特别是在阻隔性能和食品质量监测方面。本文旨在提供对这些技术潜力的具体见解。生物传感器能够实现实时监测和变质检测,确保产品更安全,而物联网则增强了供应链中的可追溯性和透明度,从而减少材料浪费、能源浪费和运营效率低下的情况,最终提高效率。纳米材料具有更好的阻隔能力、强度和抗菌性能,可提升产品质量和可持续性。该综述论文还讨论了智能食品包装的光明未来,这是由技术进步以及消费者对更安全、环保产品的需求所推动的。然而,它承认在广泛采用之前,与法规、可持续性和消费者接受度相关的挑战需要得到解决。总之,本文展示了带有生物传感器、物联网和纳米材料的智能食品包装如何通过克服传统局限性并满足不断变化的消费者需求,来改变食品行业,从而提供更高的食品安全、质量和可持续性。