Overview of the current state of scientific research and practical access in the areas of biological dairy packaging
Justification of the feasibility of using biodegradable packaging materials, bioplastics, for packaging dairy products. Mechanical properties, which ensure the quality and food safety of the dairy product even during long-term storage and transportation.
Рубрика | Биология и естествознание |
Вид | статья |
Язык | английский |
Дата добавления | 16.06.2024 |
Размер файла | 2,5 M |
Отправить свою хорошую работу в базу знаний просто. Используйте форму, расположенную ниже
Студенты, аспиранты, молодые ученые, использующие базу знаний в своей учебе и работе, будут вам очень благодарны.
54. Garcia, M. A., Pinotti, A., Zaritzky, N. E. (2006), Physicochemical, water vapour barrier and mechanical properties of corn starch and chitosan composite films. Starch/Starke, 58, 453-463. https://doi.org/10.1002/star.200500484.
55. Despond, S., Espuche, E, Domard, A. (2001), Water sorption and permeation in chitosan films: relation between gas permeability and relative humidity. J Polym Sci, 39, 3114-3127. https://doi.org/10.1002/polb.10064.
56. Muramatsu, M., Okura, M., Kuboyama, K., Ougizava, T., Yamamoto, T., Nishihara, Y., Saito, Y., Ito, K., Hirata, K., Kobayashi, Y. (2003). Oxygen permeability and free volume hole size in ethylene-vinyl alcohol copolymer films: temperature and humidity dependence. Radial Phys Chem, 68, 561-564. https://doi.org/10.1016/S0969-806X(03)00231-7.
57. Auras, R., Harte, B., Selke, S. (2004). Effect of water on the oxygen barrier properties of poly (ethylene terephthalate) and polylactide films. Journal of Applied Polymer Science, 92(3), 17901803. https://doi.org/10.1002/app.20148.
58. Martin, O., Schwach, E., Averous, L., Couturier, Y. (2001). Properties of biodegradable multilayer films based on plasticized wheat starch. Starch/Starke, 53, 372-380.https://doi.org/10.1002/1521-379X(200108)53:8<372::AID-STAR372>3.0.CO;2-F.
59. Fang, J. M., Fowler, P.A., Escrig, C., Gonzalez, R. Costa, J. A., Chamudis, I. (2005). Development of biodegradable laminate films derived from naturally occurring carbohydrate polymers. Carbohydr Polym., 60, 39-42. https://doi.org/10.1016/j.carbpol.2004.11.018.
60. Fischer, S., Vlieger, de J., Kock, T., Gilbertis, J., Fischer, H., Batenburg, L. (2000). Green composites - the materials of the future - a combination of natural polymers and inorganic particles. In: Weber C J (Ed.), Conference Proceedings, The Food Biopack Conference. Copenhagen, 27-29 August, p. 109.
61. Johannson, K. S. (2000). Improved barrier properties of renewable and biodegradable polymers by means of plasma deposition of glass-like SiOx coatings. In: Weber C J (Ed.). Conference Proceedings, The Food Biopack Conference. Copenhagen. 27-29 August. 110.
62. Ray, S., Quek, S. Y., Easteal, A., Chen, X. D. (2006). The potential use of polymer-clay nanocomposites in food packaging. Int J Food Eng, 2 (4). article 5.1-11. https://doi.org/10.2202/15563758.1149.
63. Auras, R., Harte, B., Selke, S. (2006). Sorption of ethyl acetate and D-limonene in poly(lactide) polymers. J Sci Food Agric., 86, 648-656. https://doi.org/10.1002/jsfa.2391.
64. Marboe, T. (2006). Evaluation of polylactide vs. polyethylene terephthalate bottles for packaging of canola oil. Master Thesis. Department of Food Science. The Royal Veterinary and Agricultural University, Denmark.
65. Bergenholtz, K. P., Nielsen, P. V. (2002). New improved method for evaluation of growth by food related fungi on biologically derived materials. J Food Sci., 67 (7), 2745 -2749. https://doi.org/10.1111/j.1365-2621.2002.tb08808.x.
66. Conn, R. E., Kolstad, J. J., Borzelleca, J. F., Dixler, D. S., Filler Jr., R. J, Ladu, B. N., Pariza, M. W. (1995). Safety assessment of polylactide (PLA) for use as a food-contact polymer. Food Chem Toxic., 33 (4), 273-283. https://doi.org/10.1016/0278-6915(94)00145-e.
67. Commission Regulation (EU) No 10/2011 of 14 January 2011 on plastic materials and articles intended to come into contact with food Text with EEA relevance.
68. Selin, J. F. (1997). Polylactides and their applications. In: Technology Programme Report 13/97. Technology Development Centre Tekes. Helsinki, pp. 111-127.
69. Consonni, E. (2016). Milk in cardboard packaging: is it possible? Paper Industry World, 12 October.
70. Dukalska, L., Ungure, E., Krasnova, I., Augspole, I., Muizniece Brasava, S., Levkane V., Rakcejeva T. (2012). Evaluation of various biodegradable packaging material influences on the shelf life and quality of different foods during storage [Poster presentation]. In The 5th International Symposium on Food Packaging Scientific Developments Supporting Safety and Innovation, 14 -16 November 2012, Berlin, Germany. Retrieved from http://www.ilsi.org/ Europe/Documents/DUKALSKA.pdf.
71. Bocharova-Leskina, A., Verbytskyi, S. (2019). Theoretic approaches to substantiate shelf life capacity of butter and spreads. Journal of Engineering Sciences, (3), 78-88. https: //doi.org/ 10.5281/zenodo.3444117.
72. Rejeesh, C. R., Anto, T. (2022). Packaging of milk and dairy products: Approaches to sustainable packaging. Materials Today: Proceedings.
Размещено на Allbest.ru
Подобные документы
Vectors of the molecular cloning, their functions and basic properties. Double-stranded phage. Scope of Present Review. Life cycle and genetics of Lambda. Phage Lambda as a vector. Transfection of Recombinant Molecules. Storage of Lambda Stocks.
курсовая работа [1,4 M], добавлен 11.12.2010Induction of stress adaptive response: practical considerations. Detecting and quantifying stress response. Perspectives and areas for future work. Mechanisms of microorganism adaptation to stress factors: heat, cold, acid, osmotic pressure and so on.
курсовая работа [313,2 K], добавлен 18.11.2014Animal physiology as a branch of the biological sciences life processes, bodily functions and behavior of animals. The history of physiology, its purpose, the main sections, concepts and relationship with other sciences. Basic life processes of animals.
презентация [1,4 M], добавлен 22.12.2014The use of digital technology in analyzing the properties of cells and their substructures. Modeling of synthetic images, allowing to determine the properties of objects and the measuring system. Creation of luminescent images of microbiological objects.
реферат [684,6 K], добавлен 19.04.2017Types of microorganisms. Viruses consist of genetic materials. Bacteria are organisms made up of just one cell. Algae are a type of living thing. Fungi are like plants that are not "green", they do not have the photosynthetic pigment chlorophyll.
презентация [188,3 K], добавлен 16.03.2014Hormones as organic substances, produced in small amounts by specific tissues (endocrine glands), secreted into the blood stream to control the metabolic and biological activities. Classification of hormones. The pro-opiomelanocortin peptide family.
презентация [1,2 M], добавлен 21.11.2012Skeletal system: protection of internal organs, movement in union with muscles, storage of minerals (calcium, phosphorus) and lipids. Axial, appendicular skeleton. Surface anatomy of the bone. Structure/function of joints, muscle and ligament attachments.
презентация [1,8 M], добавлен 10.03.2013Loch Ness is a large deep freshwater lake in Scotland. The history and secret of Loch Ness Monster according to legend: animal or old logs, . A huge cluster of tourists. The theory of the appearance of Nessie. Facts of the existence of for a long time.
презентация [767,8 K], добавлен 19.03.2012The production technology of dairy industry products, main sources of wastes and ways of its utilization. Description of milk processing. Waste generating processes. Handling of by-products and treatment of waste. Waste reduction. Economic considerations.
курсовая работа [528,7 K], добавлен 23.10.2012Wimm-Bill-Dann as a producer in dairy products and one of the leader children’s food in Russia. The SWOT and PEST analysis of the enterprise. The individual critical reflection on learning outcomes. The ways of the effective communication with customers.
контрольная работа [30,9 K], добавлен 17.02.2011