Upscaled Multilayer Dispersion Coating Application for Barrier Packaging: PLAX and bioORMOCER®

Author:

Nissinen Eetu1ORCID,Anghelescu-Hakala Adina1,Hämäläinen Roosa1,Kivinen Pauliina1ORCID,Somorowsky Ferdinand2ORCID,Avellan Jani3,Koppolu Rajesh1ORCID

Affiliation:

1. Sustainable Products and Materials, VTT Technical Research Centre of Finland Ltd., 02044 Espoo, Finland

2. Fraunhofer-Institut für Silicatforschung ISC, Neunerplatz 2, 97082 Würzburg, Germany

3. Walki Group Oy, Keilaranta 6, 4th Floor, 02150 Espoo, Finland

Abstract

The shift from fossil-based packaging materials to more sustainable alternatives is driven by evolving environmental regulations aiming for enhanced recyclability and biodegradability. Dispersion coatings, as opposed to extrusion-based approaches, offer significant advantages by reducing the coat weights, but generally, multiple coating layers are needed to meet functional performance requirements. This study explores the application of upscaled multilayer dispersion coatings comprising polylactic acid-based coating (PLAX) and hybrid nanomaterial lacquer (bioORMOCER®) on commercial base papers for barrier packaging using semi-pilot reverse gravure and industrial-scale rod coaters. One multilayer structure demonstrated a low water vapour transmission rate (WVTR), achieving a WVTR of 12 g/(m2·day) under standard conditions and a 78% reduction of WVTR compared to the substrate under elevated humidity. The other multilayer structure exhibited an excellent oxygen transmission rate (OTR) of 2.3 cc/(m2·day·bar) at dry conditions, which is comparable to conventional high-performance alternatives. Both multilayer coatings enhanced the grease and mineral oil barriers significantly, as heptane vapour transmission rate (HVTR) reductions exceeded 97%. The multilayer coatings demonstrated strong potential for scalable production of sustainable, high-barrier packaging materials. These findings highlight the capability of dispersion coatings to replace traditional fossil-based barriers, advancing the development of environmentally friendly packaging solutions.

Funder

the European Union’s Horizon 2020 research and innovation programme

Publisher

MDPI AG

Reference58 articles.

1. Bayer, I.S. (2021). Biopolymers in multilayer films for long-lasting protective food packaging: A review. Sustainable Food Packaging Technology, Wiley-VCH.

2. Butler, T.I., and Morris, B.A. (2016). PE-based multilayer film structures. Multilayer Flexible Packaging, Elsevier.

3. Schmid, M. (2012, January 17–21). Whey protein-based coatings as sustainable barrier material in food packaging applications. Proceedings of the 18th IAPRI World Packaging Conference, San Luis Obispo, CA, USA.

4. Viacava, G.E., Ansorena, M.R., and Marcovich, N.E. (2024). Multilayered films for food packaging. Nanostructured Materials for Food Packaging Applications, Elsevier.

5. Wagner, J.R. (2016). Multilayer Flexible Packaging, William Andrew.

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