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Bio-based panliner, which are substances made from biomass, are frequently biodegradable, which makes them more environmentally friendly than traditional plastics.
Plastics and other fossil-based goods pose a hazard to the global food chain and are dangerous persistent pollutants that can damage ecosystems. In order to satisfy the need for manufacturing, scientists have been looking for more environmentally friendly and renewable alternatives.
The Global Bio-based panliner market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2023 to 2030.
Arnitel Eco offers improved performance in bio-based ovenable pan liners. In the M&Q Packaging Corporation PanSaver ECO® high-temperature ovenable pan liners, it is generating more value while having a smaller negative environmental impact.
To stop food from “baking-on” and “burning-on” to the pot or pan surface, PanSaver® pan liners are used during meal preparation, cooking, and holding. Cold storage can also be done with PanSaver.
The new PanSaver ECO pan liners are incredibly strong and environmentally friendly, able to withstand temperatures up to 400F (204°C), yet they have many of the same advantages as the existing line of traditional pan liners.
These liners not only aid in enhancing the quality and quantity of the produced food, but they also stop food from baking or scorching to the pot or pan, reducing cooking and cleanup time and removing any food waste.
Arnitel Eco, a high performance, partially bio-based thermoplastic copolyester (TPC) from DSM, was chosen for use in the production of PanSaver ECO by M&Q Packaging Corporation. In the Arnitel family, Arnitel Eco is the newest member.
Engineering plastics’ strength and processing advantages are combined with thermoset elastomers’ capabilities in Arnitel copolyester elastomers, which perform better overall.
Engineering plastics made from bio-based materials that are both effective and low in carbon emissions are clearly needed by consumers.
Arnitel Eco’s Life Cycle Assessment estimates indicate a cradle-to-gate greenhouse gas emission reduction of up to 50% compared to thermoplastic copolyester elastomers based on oil.