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首页> 外文期刊>EFSA Journal >Scientific Opinion on the safety evaluation of the following processes based on Starlinger IV+ ? technology used to recycle post‐consumer PET into food contact materials “Visy” and “SIA EkoPET
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Scientific Opinion on the safety evaluation of the following processes based on Starlinger IV+ ? technology used to recycle post‐consumer PET into food contact materials “Visy” and “SIA EkoPET

机译:关于基于Starlinger IV +的以下过程的安全性评估的科学意见?用于将消费后PET回收为食品接触材料“ Visy”和“ SIA EkoPET”的技术

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This scientific opinion of the EFSA Panel on Food Contact Materials, Enzymes, Flavourings and Processing Aids deals with the safety evaluation of the recycling processes Visy and SIA EkoPET (EU register numbers RECYC101 and RECYC102 respectively) which are based on the same Starlinger IV+ ? technology. The decontamination efficiency of these processes was demonstrated using the same challenge test. The input of the processes is hot caustic washed and dried PET flakes originating from collected post‐consumer PET containers, containing no more than 5 % of PET from non‐food consumer applications. Through this technology, washed and dried PET flakes are dried and crystallised in a reactor, then extruded into pellets which are further crystallised in a second reactor. Crystallised pellets are then pre‐heated in a third reactor and fed to the Solid State Polymerisation (SSP) reactor. After having examined the challenge test provided, the Panel concluded that the three steps, drying and crystallisation, extrusion and crystallisation and SSP are the critical steps that determine the decontamination efficiency of the processes. The operating parameters to control their performance are the temperature, the gas flow and the residence time for the drying and crystallisation step, the temperature, the pressure and the residence time for extrusion and crystallisation and SSP steps. Under these conditions, it was demonstrated that the recycling processes are able to ensure that the level of migration of potential unknown contaminants into food is below a conservatively modelled migration of 0.1 μg/kg food. Therefore the Panel concluded the recycled PET obtained from these processes intended to be used 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 is not considered of safety concern.
机译:EFSA食品接触材料,酶,调味剂和加工助剂小组的这项科学意见涉及对基于同一Starlinger IV +?技术。使用相同的挑战测试证明了这些工艺的去污效率。工艺的输入是热碱洗过的干燥PET薄片,这些薄片来自收集的消费后PET容器,其中非食品消费应用中的PET含量不超过5%。通过该技术,将洗涤和干燥的PET薄片干燥并在反应器中结晶,然后挤出成粒料,其在第二反应器中进一步结晶。然后将结晶的粒料在第三个反应器中进行预热,然后送入固态聚合(SSP)反应器中。在审查了所提供的挑战性测试之后,小组得出结论,干燥和结晶,挤压和结晶以及SSP这三个步骤是确定工艺去污效率的关键步骤。控制其性能的操作参数是温度,气流和干燥和结晶步骤的停留时间,挤出,结晶和SSP步骤的温度,压力和停留时间。在这些条件下,证明了回收过程能够确保潜在的未知污染物向食品中的迁移水平低于0.1μg/ kg食品的保守模型迁移量。因此,小组得出结论认为,从这些过程中获得的可回收PET最多可100%用于制造与所有类型的食品接触,可在室温下长期保存,有或没有热灌装的材料和物品。关心。

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    《EFSA Journal》 |2013年第7期|共16页
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  • 中图分类 食品工业;
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