The Ohio State University, Department of Food Science and Technology, 2015 Fyffe Road, Columbus, Ohio 43210 United States.
The Ohio State University, Department of Horticulture and Crop Science, Department of Food, Agricultural and Biological Engineering, 1680 Madison Avenue, Wooster, Ohio 44691-4096 United States.
Environ Sci Technol. 2020 Apr 21;54(8):4712-4732. doi: 10.1021/acs.est.9b03755. Epub 2020 Apr 6.
Plastic production has outgrown most other man-made materials, with more than 90% being petroleum-based and nonbiodegradable. Packaging, primarily food packaging, consumes the most plastic and is the largest contributor to municipal solid waste. In addition, its dependence on crude oil feedstock makes the plastic industry unsustainable and renders plastic markets vulnerable to oil price volatility. Therefore, the development of bioalternatives to conventional plastics is now a priority of the food packaging industry. Bioplastics are polymers that are either biobased (fully or partially), or biodegradable, or both. This review aims to provide an insightful overview of the most recent research and development successes in bioplastic materials, focusing on food packaging applications. Bioplastics are compared to their conventional counterparts with respect to their mechanical, thermal, barrier, and processability properties. The gaps between bio- and conventional plastics in food packaging are elucidated. Potential avenues for improving bioplastic properties to broaden their food packaging applications are critically examined. Furthermore, two of the most controversial topics on bioplastic alternatives, sustainability assessment and their impact on the plastic waste management system, are discussed.
塑料产量已经超过了其他大多数人造材料,其中超过 90%是基于石油的不可生物降解材料。包装,主要是食品包装,消耗了最多的塑料,也是城市固体废物的最大贡献者。此外,它对原油原料的依赖使得塑料行业不可持续,使塑料市场容易受到油价波动的影响。因此,开发传统塑料的生物替代品现在是食品包装行业的首要任务。生物塑料是指那些基于生物的(完全或部分)、可生物降解的或兼具这两种特性的聚合物。本综述旨在深入了解生物塑料材料的最新研究和开发成果,重点关注食品包装应用。将生物塑料与传统塑料在机械、热、阻隔和可加工性方面进行了比较。阐述了生物塑料和传统塑料在食品包装方面的差距。批判性地研究了改善生物塑料性能以拓宽其在食品包装应用方面的潜在途径。此外,还讨论了生物塑料替代品中两个最具争议的话题,即可持续性评估及其对塑料废物管理系统的影响。