Pires João Ricardo Afonso, Souza Victor Gomes Lauriano, Fuciños Pablo, Pastrana Lorenzo, Fernando Ana Luísa
MEtRiCS, Departamento de Ciências e Tecnologia da Biomassa, NOVA School of Science and Technology, FCT NOVA, Campus de Caparica, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
International Iberian Nanotechnology Laboratory (INL), Av. Mestre José Veiga s/n, 4715-330 Braga, Portugal.
Polymers (Basel). 2022 Mar 27;14(7):1359. doi: 10.3390/polym14071359.
Our society lives in a time of transition where traditional petroleum-based polymers/plastics are being replaced by more sustainable alternative materials. To consider these bioproducts as more viable options than the actual ones, it is demanded to ensure that they are fully biodegradable or compostable and that there is no release of hazardous compounds to the environment with their degradation. It is then essential to adapt the legislation to support novel specific guidelines to test the biodegradability of each biopolymer in varied environments, and consequently, establish consistent data to design a coherent labeling system. This review work aims to point out the current standards that can serve as a basis for the characterization of biopolymers' biodegradation profile in different environments (soil, compost, and aquatic systems) and identify other laboratory methodologies that have been adopted for the same purpose. With the information gathered in this work, it was possible to identify remaining gaps in existing national and international standards to help establish new validation criteria to be introduced in future research and policies related to bioplastics to boost the sustainable progress of this rising industry.
我们的社会正处于一个转型时期,传统的石油基聚合物/塑料正被更具可持续性的替代材料所取代。为了将这些生物产品视为比现有产品更可行的选择,需要确保它们完全可生物降解或可堆肥,并且在降解过程中不会向环境中释放有害化合物。因此,必须调整立法,以支持新的特定指南,用于测试每种生物聚合物在不同环境中的生物降解性,并进而建立一致的数据,以设计一个连贯的标签系统。本综述旨在指出当前可作为不同环境(土壤、堆肥和水生系统)中生物聚合物生物降解特性表征基础的标准,并识别为此目的而采用的其他实验室方法。通过本研究收集的信息,有可能识别现有国家和国际标准中仍然存在的差距,以帮助建立新的验证标准,以便在未来与生物塑料相关的研究和政策中引入,从而推动这个新兴行业的可持续发展。