The 100% recyclable mono material flexible packaging film market will reach 70.9 billion US dollars in 2025, with a total volume of 26.03 million tons. The compound annual growth rate reached 3.9%. Asia Pacific, North America, and Western Europe are the three major consumer markets worldwide, accounting for 48.6%, 17.2%, and 15.5%, respectively.
Main products are
2. 100% recyclable mono-material PP Pouches
It can be said that mono material recyclable packaging is entering a stage of rapid development and application.
For the application of mono material packaging, how to improve the barrier performance of a single material has always been a key bottleneck problem to be overcome. The industry also offers various methods, including coating barrier coatings, vapor deposition of aluminum oxide, silicon oxide, co extruded EVOH, PVDC, etc. Today, we will introduce a single material thin film that enhances barrier properties through vapor deposition of SiOx (silicon oxide).
Compared with aluminum oxide coating, the most unique advantage of silicon oxide coating is that it can detect the presence of metal debris in the content through metal detection, which undoubtedly greatly improves the safety of food packaging.
Longdapac is committed to the research and manufacturing of functional films. The PET, PP, and PE series barrier products developed for mono material packaging meet market demand and provide new and excellent choices for single material packaging.
Coating type barrier film barrier performance (SiOx barrier film>AlOx barrier film)>Coating type barrier film. SiOx high resistance films have unparalleled advantages in terms of membrane density, flexibility, and cooking resistance compared to other coated and AlOx type barrier films, and have also received a perfect experience in applications.
For example, cooking at 121 ℃ for 30 minutes without wrinkles:
BOPP barrier film has been bagged and passed under different cooking conditions. So we are ready to have 100% recyclable high barrier mono-material PP retort pouch.