UMR IATE, INRAE, Montpellier, France.
UMR IATE, Université de Montpellier, Montpellier, France.
Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2022 Nov;39(11):1878-1892. doi: 10.1080/19440049.2022.2122589. Epub 2022 Sep 21.
For the purpose of mechanical recycling for food contact applications, decontamination of polyhydroxybutyrate-co-valerate (PHBV) plastic was performed under different temperatures and time conditions. As expected, increasing the decontamination temperature and duration increased the decontamination efficiency, but also the degradation of the polymer. The combination 160 °C/6 h was selected as the optimal conditions that maximize contaminants removal while minimizing polymer degradation. Then the safety of the recycled PHBV under these conditions was assessed, in accordance with EFSA regulation based on bottle-to-bottle PET recycling. Decontamination of low molecular weight molecules such as toluene, chlorobenzene, and methyl salicylate was nearly complete with residual concentrations below the modeled concentrations allowed in the polymer when the adult scenario is considered. However, the higher molecular weight and lower volatility molecules exhibited acceptable decontamination efficiencies, but their residual concentrations in the polymer exceeded the maximum concentrations of no concern. The presence of these molecules allows the use of nearly 21% recycled PHBV in the new materials to meet safety criteria. It is important to keep in mind that this work, never done before, is a preliminary work on mechanical recycling of PHBV, mainly based on extrapolation of PET conditions and regulations. Much more research needs to be done to improve the decontamination process, the barrier properties of PHBV or to think about a short recycling line for PHBV.
为了在食品接触应用的机械回收目的,在不同的温度和时间条件下对聚羟基丁酸酯-共-戊酸酯(PHBV)塑料进行了去污处理。正如预期的那样,增加去污温度和时间会提高去污效率,但也会导致聚合物降解。选择 160°C/6h 的组合作为最佳条件,可在最大程度去除污染物的同时最小化聚合物降解。然后,根据 EFSA 基于瓶对瓶 PET 回收的规定,评估了在这些条件下回收 PHBV 的安全性。在考虑成人情况时,低分子量分子(如甲苯、氯苯和甲基水杨酸甲酯)的去污效果几乎完全,残留浓度低于聚合物中允许的模型浓度。然而,高分子量和低挥发性分子表现出可接受的去污效率,但它们在聚合物中的残留浓度超过了无关注的最大浓度。这些分子的存在允许将近 21%的回收 PHBV 用于新材料,以满足安全标准。需要记住的是,这项从未做过的工作是 PHBV 机械回收的初步工作,主要基于对 PET 条件和法规的推断。需要进行更多的研究来改进去污过程、PHBV 的阻隔性能,或者考虑 PHBV 的短循环回收线。