
Safety assessment of the process Flight Plastics ( UK ), based on Starlinger de CON technology, used to recycle post‐consumer PET into food contact materials
Author(s) -
Silano Vittorio,
Barat Baviera José Manuel,
Bolognesi Claudia,
Chesson Andrew,
Cocconcelli Pier Sandro,
Crebelli Riccardo,
Gott David Michael,
Grob Konrad,
Lambré Claude,
Mengelers Marcel,
Mortensen Alicja,
Rivière Gilles,
Steffensen IngerLise,
Tlustos Christina,
Van Loveren Henk,
Vernis Laurence,
Zorn Holger,
Dudler Vincent,
Milana Maria Rosaria,
Papaspyrides Constantine,
Tavares Poças Maria de Fátima,
Croera Cristina,
Lioupis Alexandros,
Lampi Evgenia
Publication year - 2020
Publication title -
efsa journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.076
H-Index - 97
ISSN - 1831-4732
DOI - 10.2903/j.efsa.2020.6253
Subject(s) - human decontamination , food contact materials , environmental science , waste management , residence time (fluid dynamics) , food packaging , process engineering , materials science , process (computing) , continuous flow , pulp and paper industry , chemistry , engineering , computer science , food science , biochemical engineering , geotechnical engineering , operating system
The EFSA Panel on Food Contact Materials, Enzymes and Processing Aids ( CEP ) assessed the safety of the recycling process Flight Plastics ( UK ) ( EU register number RECYC 191), which uses the Starlinger de CON technology. The input material is hot washed and dried poly(ethylene terephthalate) ( PET ) flakes originating from collected post‐consumer PET containers, e.g. bottles, including no more than 5% PET from non‐food consumer applications. The flakes are preheated before being submitted to solid‐state polycondensation ( SSP ) in a continuous reactor at high temperature under vacuum and gas flow. Having examined the challenge test provided, the Panel concluded that the preheating (step 2) and the decontamination in the continuous SSP reactor (step 3) are critical in determining the decontamination efficiency of the process. The operating parameters to control the performance of these critical steps are temperature, pressure, residence time and gas flow rate. It was demonstrated that this recycling process is able to ensure a level of migration of potential unknown contaminants into food 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 considered to be 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.