Department of Biotechnology & Medical Engineering, National Institute of Technology Rourkela, 769 008, India.
Department of Food Process Engineering, National Institute of Technology Rourkela, 769 008, India.
Food Res Int. 2024 Sep;191:114723. doi: 10.1016/j.foodres.2024.114723. Epub 2024 Jul 4.
The improper disposal of petroleum-based plastics has been associated with detrimental environmental consequences, such as the proliferation of microplastic pollution and increased emissions of greenhouse gases (GHGs). Consequently, biopolymers have emerged as a highly regarded alternative due to their environmental-friendly attributes and versatile range of applications. In response to consumer demands for safer food options, sustainable packaging, and escalating environmental concerns, the food sector is increasingly adopting biopolymers. Further, in the recent decade, the usage of active or functional biopolymers has evolved into smart biopolymers that can transmit real-time data to consumers. This review covers key topics such as antimicrobial and biodegradable packaging, edible coatings and films, incorporation of scavengers and bioactive substances that prolong the shelf life and guard against moisture and microbial contamination. The paper also discusses the development of edible cutlery as a sustainable substitute for plastic, the encapsulation of bioactive substances within biopolymers, 3-D food printing for regulated nutrition delivery and thickening and gelling agents that improve food texture and stability. It also discusses the integration of smart polymer functions, demonstrating their importance in guaranteeing food safety and quality, such as biosensing, pH and gas detection, antibacterial characteristics, and time-temperature monitoring. By shedding light on market trends, future scope, and potentialities, this review aims to elucidate the prospects of utilizing biopolymers to address sustainability and quality concerns within the food industry effectively.
石油基塑料的不当处理与环境危害有关,例如微塑料污染的扩散和温室气体(GHG)排放的增加。因此,由于其环保特性和广泛的应用范围,生物聚合物已成为一种备受关注的替代品。为了满足消费者对更安全食品选择、可持续包装以及日益加剧的环境问题的需求,食品行业越来越多地采用生物聚合物。此外,在最近十年中,活性或功能性生物聚合物的使用已经发展成为智能生物聚合物,可以向消费者实时传输数据。本综述涵盖了关键主题,如抗菌和可生物降解包装、可食用涂层和薄膜、清除剂和生物活性物质的掺入,以延长保质期并防止水分和微生物污染。本文还讨论了可食用餐具作为塑料的可持续替代品的发展、生物聚合物内生物活性物质的封装、用于调节营养输送的 3D 食品打印以及改善食品质地和稳定性的增稠和胶凝剂。它还讨论了智能聚合物功能的整合,展示了它们在保证食品安全和质量方面的重要性,例如生物传感、pH 和气体检测、抗菌特性和时间-温度监测。通过揭示市场趋势、未来范围和潜力,本综述旨在阐明利用生物聚合物有效解决食品工业可持续性和质量问题的前景。