Clariant and Floreon collaborate to expand biopolymer applications
Clariant's Additives concern and Floreon-Transforming Packaging has appear an exciting new collaboration further to extend the performance backdrop and market potential of biopolymers while preserving their environmental benefits.
Past integrating benefits of Clariant'due south additives with Floreon's proprietary material solutions, the collaboration aims to open up additional possibilities for plastic manufacturers and make owners to consider biopolymers as a feasible, depression carbon footprint alternative to fossil-based plastics for both unmarried-use and durable applications. Markets set to benefit from the new enhanced grades include rigid and flexible packaging, electrical and electronic equipment (East&Due east), hygiene products, consumer goods, and automotive.
Floreon develops and markets proprietary compounds based on Polylactic acid (PLA) and containing 70 to 90% renewable, plant-based raw materials, thus containing carbon sequestered from the temper by plants. They are typically mechanically tougher than traditional PLA and tin deliver significant energy savings in processing. Floreon compounds are recyclable, and they tin likewise be composted via industrial composting. That makes Floreon's materials viable for applications where, at this stage, contamination with food waste and organic affair makes mechanical recycling unfeasible.
Clariant'south industry-leading portfolio of sustainable additives includes a wide range of bio-based additives, which reliably evangelize both high operation and sustainability to the plastics value chain. Introduced at the G 2022 plastics trade fair under the Exolit OP Terra, Licocene Terra, and Licocare RBW Vita merchandise names, they help to reduce fossil resources intensity and enable more sustainable cloth choices. Clariant'southward experts will support the Floreon development team to enhance the performance possibilities and processing characteristics of bioplastics.
The telescopic of benefits is vast, which includes achieving less energy use and faster cycle times by increasing the processing efficiency or adding entirely new properties to the fabric. Product manufacturers will have the possibility to tailor compounds to suit specific processing technologies and applications, including in some cases those where bioplastics take so far not been able to run across the challenges of enervating weather condition or environments.
Shaun Chatterton, main executive officer, Floreon-Transforming Packaging, said, "Brand owners and plastic converters are seeking more sustainable material solutions to offering their customers, driven past goals, ranging from recyclable solutions and improving waste management to lowering carbon footprint and reducing resources apply. Floreon tin contribute to these goals. As a small business organisation, our team is very excited to be able to accept the benefits of biopolymers to new heights by cartoon on Clariant'south extensive capabilities in developing additives focused on the operation needs of the plastics manufacture. Floreon has the potential to transform not only packaging but many industries, and we expect to launch our offset production from this collaboration into the marketplace during the first half of 2020."
Stephan Lynen, head of Business Unit Additives, Clariant, commented, "We are excited to be working together with Floreon using the advantages of our range of sustainable additives to close the performance gap betwixt biopolymers and other materials. This is just another way we tin can contribute to giving the plastics value chain a greater choice of options for meeting sustainability targets and consumer demands, and in doing then, support the transformation to a circular economy. For society, our environment, and future generations, it is our responsibility to improve sustainability performance and reduce carbon footprint and waste continuously."
Source: https://packagingsouthasia.com/packaging-production/clariant-and-floreon-collaborate-to-expand-high-performance-biopolymer-applications/
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