Investigation of barrier properties of packaging polymer film materials
DOI:
https://doi.org/10.15587/2312-8372.2016.85403Keywords:
polymer packaging, moisture permeability, diffusion, barrier properties, mass transferAbstract
The main types of interactions of packaged food product and packaging are analyzed. These interactions may occur between the polymer film packaging material and the product. It is found that the most simple to implement an insilation of internal space of polymer film packaging from environmental impact. It is noted that the permeability of gases and gas mixtures through nonporous film polymer packaging is typically considered within the «dissolution – diffusion» mechanism. Usually the study of these processes requires special equipment.
The main factors that affect the permeability of the polymer film packaging material are analyzed. It is noted that the permeability of the multilayer polymeric film materials is dependent on the physical and chemical properties of the components and process parameters. The main parameters are: temperature, pressure and concentration of the substance. It is noted that molecular interactions with packaging materials can be classified into the following types: permeability of compounds through the polymer film packaging; sorption of compounds by polymer film packaging and migration of compounds from a polymer film packaging. It is indicated that obtained results may be used for the design of packaging film materials with the necessary and stable barrier properties.
The technique of experimental studies of the barrier properties of various polymer film packaging materials and absorption capacity of packaged products is proposed and its results are described. This technique is realized using available equipment. The dynamics of moisture penetration inside the packaging is investigated. It is found that the absorption capacity of silica gel remained stable for 15-20 days from the beginning of the experiment. The highest moisture permeability has an ethylene and vinyl acetate copolymer and low-density polyethylene, and the lowest – polypropylene
References
- Selke, S. E. M., Culter, J. D. (2015). Plastics Packaging: Properties, Processing, Applications, and Regulations. Munich: Carl Hanser Verlag, 487. doi:10.3139/9783446437197
- Hanlon, J., Kelsey, R., Forcinio, H. (1998). Handbook of Package Engineering, Third Edition. CRC Press, 698. doi:10.1201/b18045
- Muravin, Ya. G., Tolmacheva, M. N., Dodonov, A. M. (1985). Primenenie polimernyh i kombinirovannyh materialov dlia upakovyvaniia pishchevyh produktov [The using of polymeric and composite materials for packaging of foodstuffs]. Moscow: Agropromizdat, 205.
- Steele, R. (2004). Understanding and Measuring the Shelf-Life of Food. Elsevier, 448. doi:10.1016/b978-1-85573-732-7.50002-0
- Kryzhanovskii, V. K., Kerber, M. L., Burlov, V. V., Panimatchenko, A. D. (2004). Proizvodstvo izdelii iz polimernyh materialov [Manufacture of products from polymeric materials]. Sankt-Petersburg: Professiia, 464.
- In: Gul', V. E. (1976). Polimernye plenochnye materialy [Polymeric film materials]. Moscow: Himiia, 248.
- Golub, O. V., Vasil'eva, S. B. (2005). Upakovka i hranenie pishchevyh produktov [Packaging and storage of food products]. Kemerovo: KTIPP, 148.
- Samoilov, V. Ya., Ostapchuk, V. V., Taranenko, I. M. (2012). Tehnologiia i oborudovanie upakovochnyh materialov [Technology and equipment for packaging materials]. Kharkiv: NAU n. a. N. E. Zhukovskogo «KhAI», 71.
- Efremov, N. F., Kolesnichenko, M. G. (2011). Tehnologiia upakovochnogo proizvodstva [Technology of the packaging production]. Moscow: MGUP, 350.
- Jovanovic, S., Dzunuzovic, J. (2011). Development directions of packaging made from polymer materials. Hemijska Industrija, 65 (6), 621–635. doi:10.2298/hemind111018087j
- Siracusa, V. (2012). Food Packaging Permeability Behaviour: A Report. International Journal of Polymer Science, 2012, 1–11. doi:10.1155/2012/302029
- Suput, D., Lazic, V., Levic, L., Krkic, N., Tomovic, V., Pezo, L. (2013). Characteristics of meat packaging materials and their environmental suitability assessment. Hemijska Industrija, 67 (4), 615–620. doi:10.2298/hemind120907104s
- Atmani, R., El Kouali, M., Talbi, M., El Brouzi, A., Ouzidan, F. (2015). Study of the Profile Concentration of a Chemical Through a Sandwich Packaging. Oriental Journal of Chemistry, 31 (3), 1659–1662. doi:10.13005/ojc/310344
- Schmid, M., Dallmann, K., Bugnicourt, E., Cordoni, D., Wild, F., Lazzeri, A., Noller, K. (2012). Properties of Whey-Protein-Coated Films and Laminates as Novel Recyclable Food Packaging Materials with Excellent Barrier Properties. International Journal of Polymer Science, 2012, 1–7. doi:10.1155/2012/562381
- Schmid, M., Sangerlaub, S., Miesbauer, O., Jost, V., Werthan, J., Stinga, C., Samain, D., Stramm, C., Noller, K., Muller, K. (2014). Water Repellence and Oxygen and Water Vapor Barrier of PVOH-Coated Substrates before and after Surface Esterification. Polymers, 6 (11), 2764–2783. doi:10.3390/polym6112764
- Buntinx, M., Willems, G., Knockaert, G., Adons, D., Yperman, J., Carleer, R., Peeters, R. (2014). Evaluation of the Thickness and Oxygen Transmission Rate before and after Thermoforming Mono- and Multi-layer Sheets into Trays with Variable Depth. Polymers, 6 (12), 3019–3043. doi:10.3390/polym6123019
- Kolosov, O. Ye. (2015). Tekhnolohiia pakuvalnoho vyrobnytstva [Technology of the packaging production]. Kyiv: VPK «Politekhnika», 247.
- Kolosov, O. Ye. (2015). Tekhnolohiia zberihannia kharchovoi produktsii: neupakovanoi ta upakovanoi iz zastosuvanniam polimernykh plivkovykh materialiv [Storage Technology of food products: not packaged and packed with polymer film materials]. Kyiv: VPK «Politekhnika», 179.
- Kolosov, O. Ye., Sidorov, D. E., Maletskiy, S. V. (2016). Proektuvannia pakuvalnykh polimernykh plivkovykh materialiv z neobkhidnymy bariernymy vlastyvostiamy. Visnyk NTUU «KPI». Seriia «Khimichna inzheneriia, ekolohiia ta resursozberezhennia, 1 (15), 15–20.
- In: Harper, C. A. (2005). Handbook of Plastic Processes. John Wiley & Sons, Inc., 743. doi:10.1002/0471786586
- Massey, L. K. (2003). Permeability Properties of Plastics and Elastomers. NY: Plastics Design Library, 601. doi:10.1016/b978-1-884207-97-6.50103-0
- In: Knoll, W., Advincula, R. C. (2011). Functional Polymer Films. Wiley-VCH Verlag GmbH & Co. KGaA, 1080. doi:10.1002/9783527638482
- Wagner, J. R. Jr. (2010). Multilayer Flexible Packaging. Elsevier, 258. doi:10.1016/b978-0-8155-2021-4.10019-x
- Briston, J. H., Katan, L. L. (1988). Plastics Films. Ed. 3. Longman Scientific & Technical, 1050.
- Risch, S. (2000). Migration of Toxicants and Odaractive Substances from Flexible Packaging Materials to Food. Journal of Food Technology, 7, 95–102.
- Choudhry, M. S., Lox, F., Buekens, A., Decroly, P. (1998). Evaluation of migrational behaviour of plastic food-contact materials: a comparison of methods. Packaging Technology and Science, 11 (6), 275–283. doi:10.1002/(sici)1099-1522(199811/12)11:6<275::aid-pts441>3.0.co;2-r
- De Abreu, D. A. P., Cruz, J. M., Angulo, I., Losada, P. P. (2009). Mass transport studies of different additives in polyamide and exfoliated nanocomposite polyamide films for food industry. Packaging Technology and Science, 23 (2), 59–68. doi:10.1002/pts.879
- Baner, A. L., Piringer, O. (2007). Preservation of quality through packaging. Plastic Packaging Materials for Food. Wiley-VCH Verlag GmbH, 1–8. doi:10.1002/9783527613281.ch01
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Copyright (c) 2016 Олександр Євгенович Колосов, Олександр Леонідович Сокольський, Сергій Віталійович Малецький
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