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Safety assessment of the process Nosoplas based on Starlinger iV+ technology used to recycle post‐consumer PET into food contact materials

机译:基于Starlinger IV +技术的过程Nosoplas的安全评估用于将消费者的宠物回收成食品接触材料

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摘要

The EFSA Panel on Food Contact Materials, Enzymes and Processing Aids (CEP) assessed the safety of the recycling process Nosoplas (EU register number RECYC190), which uses the Starlinger iV+ technology. The input is hot caustic washed and dried poly(ethylene terephthalate) (PET) flakes mainly originating from collected post‐consumer PET containers, with no more than 5% PET from non‐food consumer applications. The flakes are dried and crystallised in a first reactor, then extruded into pellets. These pellets are crystallised, preheated and treated in a solid‐state polycondensation (SSP) reactor. Having examined the challenge test provided, the Panel concluded that the drying and crystallisation (step 2), extrusion and crystallisation (step 3) and SSP (step 4) are critical in determining the decontamination efficiency of the process. The operating parameters to control the performance of these critical steps are temperature, air flow and residence time for the drying and crystallisation step, and temperature, pressure and residence time for the extrusion and crystallisation step, as well as the SSP step. It was demonstrated that this recycling process is able to ensure that the level of migration of potential unknown contaminants into food is below the conservatively modelled migration of 0.1 μg/kg food. Therefore, the Panel concluded that the recycled PET obtained from this process is not of safety concern, when used at up to 100% for the manufacture of materials and articles for contact with all types of foodstuffs for long‐term storage at room temperature, with or without hotfill. The final articles made of this recycled PET are not intended to be used in microwave and conventional ovens and such uses are not covered by this evaluation.
机译:食品接触材料的EFSA面板,酶和加工助剂(CEP)评估了使用Starlinger IV +技术的回收过程Nosoplas(欧盟寄存器编号RECYC190)的安全性。输入是热苛性洗涤和干燥聚(乙二醇酯)(PET)薄片主要来自收集的消费后PET容器,不超过5%的宠物来自非食品消费应用。将薄片干燥并在第一反应器中结晶,然后挤出成粒料。这些粒料是结晶的,预热并在固态缩聚(SSP)反应器中处理并处理。检查所提供的挑战测试,小组得出结论,干燥和结晶(步骤2),挤出和结晶(步骤3)和SSP(步骤4)对于确定该方法的去污效率是至关重要的。操作参数控制这些关键步骤的性能是干燥和结晶步骤的温度,气流和停留时间,以及挤出和结晶步骤的温度,压力和停留时间,以及SSP步骤。结果证明,该回收过程能够确保潜在的未知污染物迁移到食物中的迁移水平低于保守模型的0.1μg/ kg食物的迁移。因此,该小组得出结论,当在室温下使用高达100%的材料和制品的材料和制品用于制造材料和制品,在室温下与所有类型食品接触的材料和制品的使用或没有填充。由该再生宠物制成的最终制品不旨在用于微波和常规烤箱,并且该评估不包括这些用途。

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