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Novatoriska iepakojuma ietekme uz piena pomādes konfekšu – šerbeta – kvalitāti uzglabāšanas laikā / Influence of Innovative Packaging on the Quality of Milk Pomade Sweets – Sherbet – during Storage


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1. Ahvenainen, R. (2003). An introduction: Active and intelligent packaging. In R. Ahvenainen (Ed.), Novel food packaging technologies (pp. 5-21). Cambridge, U.K: Woodhad Publishing.Search in Google Scholar

2. Alkan packaging. (2006). Alkan Ceramis®-PLA, biodegradable barrier film. Retrieved from http://www.flexpack.org/MEMONL/mo_sustainable_packaging/sp_member_initiatives/Alcan/Alcan.pdfSearch in Google Scholar

3. Arella, M., Buzarovska, A., Errico, M.E., Gentile, G., & Grozdanov, A. (2009). Ecochallenges of bio-based polymer composites. Journal of Materials, 2(3), 911-925.10.3390/ma2030911Search in Google Scholar

4. Avella, M., De Vlieger, J.J., Errico, M.E., Fischer, S., Vacca, P., & Volpe, M.G. (2005). Biodegradable starch/clay nanocomposite films for food packaging applications. FoodChemistry, 93(3), 467-474.10.1016/j.foodchem.2004.10.024Search in Google Scholar

5. Barbiroli, G., & Mazzaracchio, P. (1994). Classification and standardization of bakery products and flour confectionery in relation to quality and technological progress. FoodControl, 5(1), 33-38.10.1016/0956-7135(94)90131-7Search in Google Scholar

6. Ben-Yoseph, E., & Hartel, R.W. (2006). Computer simulation of sugar crystallization in confectionery products. Innovative FoodScience and Emerging Technologies, 7(3), 225-232.10.1016/j.ifset.2005.12.003Search in Google Scholar

7. Bower, J.A. (2009). Statistical methods for foodscience: Introductory procedures for the foodpractitioner. Oxford, UK: Ames, Iowa: Wiley- Blackwell.10.1002/9781444320947Search in Google Scholar

8. Ergun, R., Lietha, R., & Hartel, R.W. (2010). Moisture and shelf life in sugar confections. Critical Reviews in Food Science and Nutrition, 50(2), 162-192.10.1080/1040839080224883320112158Search in Google Scholar

9. Europe’s packaging magazine Packaging today. (2007, September). Plastic fantastic. Retrieved from http://www.packagingtoday.co.uk/story.asp?storycode=51652Search in Google Scholar

10. Farris, S., Schaich, K.M., Liu, L.S., Piergiovanni, L., & Yam, K.L. (2009). Development of polyion-complex hydrogels as an alternative approach for the production of bio-based polymers for food packaging applications. Trends in Food Science andTechnology, 20(8), 316-322.10.1016/j.tifs.2009.04.003Search in Google Scholar

11. Funabashi, M., Ninomiya, F., & Kukioka, M. (2009). Biodegradability evaluation of polymer by ISO 14855-2. International Journal ofMolecular Sciences, 10(8), 3635-3654.10.3390/ijms10083635281281920111676Search in Google Scholar

12. Glaw, T. (2007, May). Transparent inorganicbarrier properties. Retrieved from http://www.tappi.org/content/events/07europlace/presentation/07europl46.pdfSearch in Google Scholar

13. Innovia Films. (2006, July). First metallisedNatureflex film launched. Retrieved from http://www.ferret.com.au/c/Innovia-Films/Firstmetallised-natureflex-film-launched-n696221Search in Google Scholar

14. Innovia Films. (2009, September). Sustainable,compostable NatureFlex™ film selectedto package nutritional Canadian products. Retrieved from http://www.packaging-int.com/article/sustainable-compostable-natureflexfilm-selected-to-package-nutritional-canadianproducts.htmlSearch in Google Scholar

15. Innovia Films. (2010, March). MetallisedNatureFlex™ wraps Thorntons Melts. Retrieved from http://www.packaging-int.com/article/metallised-natureflex-wraps-thorntonsmelts.htmlSearch in Google Scholar

16. Jensen, P.N., Sørensen, G., Brockhoff, P., & Bertelsen G. (2003). Development of packaging systems for shelled walnuts based on oxygen absorbers. Journal of Agricultural and FoodChemistry, 51(17), 4941-4947.10.1021/jf021206h12903950Search in Google Scholar

17. Labuza, T., Roe, K., Payne, C., Panda, F., Labuza, T.J., Labuza, P.S., & Krusch, L. (2004). Storage stability of food systems: Influence of state changes during drying and storage. In Proceedings of the 14th International Drying Symposium (IDS 2004), 22-25 August 2004 (pp. 48-68). Säo Paulo, Brazil.Search in Google Scholar

18. Lagaron, J.M., & López-Rubio, A. (2010). Latest developments and future trends in food packaging and biopackaging. In M.L. Passos & C.P. Ribeiro (Eds.), Innovation infood engineering new techniques and products (pp. 485-503). USA: CRC Press Taylor & Francis Group.Search in Google Scholar

19. López-Carballo, C., Catalá, R., Gavara, D., & Hernįndez-Muńoz, P. (2011). Food applications of active packaging EVOH films containing cyclodextrins for the preferential scavenging of undesirable compounds. Journal of FoodEngineering, 104(3), 380-386.Search in Google Scholar

20. Lopez-Rubio, A., Almenar, E., Hernandez- Munoz, P., Lagaron, J.M., Catala, R., & Gavara, R. (2004). Overview of active polymer-based packaging technologies for food applications. Food Reviews International, 20(4), 357-387.10.1081/FRI-200033462Search in Google Scholar

21. MacDougall, D.B. (2002). Colour measurement of food: Principles and practice. In D.B. MacDougall (Ed.), Colour in food. Improving quality (pp. 33-63). Cambridge, England: Woodhead Publishing Ltd.Search in Google Scholar

22. Manley, D. (1998). Biscuit, cookie and crackermanufacturing: Manual 1 - Ingredients. Cambridge, UK: Woodhad Publishing Limited.Search in Google Scholar

23. Mathlouthi, M. (Ed.). (1994). Food packagingand preservation. London: Blackie Academic and Professional.10.1007/978-1-4615-2173-0Search in Google Scholar

24. Meyer, A.R. (2007). Bio-packages to raise organic food’s estimation. PLA bio-plastics trays for high-quality fresh foods and convenient foods under MAP. FleischwirtschaftInternational, 5, 45-48.Search in Google Scholar

25. Mexis, S.F., Badeka, A.V., Riganakos, K.A., & Kontominas, M.G. (2010). Effect of active and modified atmosphere packaging on quality retention of dark chocolate with hazelnuts. Innovative Food Science and EmergingTechnologies, 11(1), 177-186.10.1016/j.ifset.2009.09.001Search in Google Scholar

26. Mitrus, M., Wojtowicz, A., & Moscicki, L. (2009). Biodegradable polymers and their practical utility. In L. Janssen & L. Moscicki (Eds.), Thermoplastic starch (pp. 1-33). Weinheim: WILEY-VCH Verlag GmbH & Co. KGaA.Search in Google Scholar

27. Narayan, R. (2001). Drivers for biodegradble/ compostable plastics and role of composting in waste management and sustainable agriculture. Report Paper. Orbit Journal, 1(1), 1-9.Search in Google Scholar

28. NatureFlex. (2010, April). Cadbury Flake usesNatureFlex™. Retrieved from http://www.innoviafilms.com/NatureFlex/News/Media-Centre.aspx?id=7Search in Google Scholar

29. Pastorelli, S., Torri, L., Rodriguez, A., Valzacchi, S., Limbo S., & Simoneau, C. (2007). Solid-phase micro-extraction (SPME-GC) and sensors as rapid methods for monitoring lipid oxidation in nuts. Food Additives andContaminants, 24(11), 1219-1225.10.1080/0265203070142698717852395Search in Google Scholar

30. Quinton, L.A., & Kennedy, J.F. (2002). Book review: The science of sugar confectionery - W.P. Edwards, The Royal Society of Chemistry, 2000. Carbohydrate Polymers, 47(1), 88-89.Search in Google Scholar

31. Raisi, A., & Aroujalian, A. (2007). Reduction of the glucose syrup browning rate by the use of modified atmosphere packaging. Journal ofFood Engineering, 80(1), 370-373.10.1016/j.jfoodeng.2006.04.061Search in Google Scholar

32. Reinheimer, M.A., Mussati, S., & Scenna, N.J. (2010). Influence of product composition and operating conditions on the unsteady behavior of hard candy cooling process. Journal of FoodEngineering, 101(4), 409-416.10.1016/j.jfoodeng.2010.07.029Search in Google Scholar

33. Reinheimer, M.A., Mussati, S., Scenna, N.J., & Pérez, G.A. (2010). Influence of the microstructure and composition on the thermal-physical properties of hard candy and cooling process. Journal of Molecular Structure, 980(1-3), 250-256.10.1016/j.molstruc.2010.07.027Search in Google Scholar

34. Restuccia, D., Spizzirri, U.G., Parisi, O.I., Cirillo, G., Curcio, M., Iemma, F., ... Picci, N. (2010). New EU regulation aspects and global market of active and intelligent packaging for food industry applications. FoodControl, 21(11), 1425-1435.10.1016/j.foodcont.2010.04.028Search in Google Scholar

35. Rooney, M.L. (1995). Active food packaging. London, UK: Chapman & Hall.10.1007/978-1-4615-2175-4Search in Google Scholar

36. Rooney, M.L. (2005a). Introduction to active food packaging technologies. In J.H. Han (Ed.), Innovations in food packaging (pp. 63-80). Oxford, UK: Elsevier Academic Press.10.1016/B978-012311632-1/50037-1Search in Google Scholar

37. Rooney, M.L. (2005b). Oxygen-scavenging packaging. In J.H. Han (Ed.), Innovations infood packaging (pp. 123-138). Oxford, UK: Elsevier Academic Press.10.1016/B978-012311632-1/50040-1Search in Google Scholar

38. Scussel, V.M., Tanello, A.C., Giordano, B.N., Manfio, D., Galvão, S., & Rodrigues, M.N.F. (2010). Effect of oxygen reducing atmospheres on the quality and safety of stored shelled Brazil nut packs. In Proceedings of the 10th International Working Conference on Stored Product Protection, 27 June-2 July 2010 (pp. 560-565). Estoril, Portugal.Search in Google Scholar

39. Silagyi, K., Kimn, S.H., Lo, Y.M., & Wei, C. (2009). Production of biofilm and quorum seeming by Escherichia coli 0 157:H7 and its transfer from contact surfaces to meat, poultry, ready-to-eat deli, and produce products. Journal of Food Microbiology, 6(26), 514-519.10.1016/j.fm.2009.03.004Search in Google Scholar

40. Siracusa, V., Rocculi, P., Romani, S., & Rosa, D. (2008). Biodegradable polymers for food packaging. Trends in Food Science &Technology, 19(12), 634-643.10.1016/j.tifs.2008.07.003Search in Google Scholar

41. Sucharzewska, D., Stochmal, A., & Oleszek, W. (2003). The effect of Yucca schidigera extract on the physical structure and on the oxidative stability of sugar-candy foam products. Lebensmittel Wissenschaft und Technologie, 36(3), 347-351.10.1016/S0023-6438(03)00016-1Search in Google Scholar

42. Talja, R.A., Helen, H., Roos, Y.H., & Jouppila, K. (2008). Effect of type and content of binary polyol mixtures on physical and mechanical properties of starch-based edible films. Carbohydrate Polymers, 71(2), 269-276.10.1016/j.carbpol.2007.05.037Search in Google Scholar

43. Taub, I.A., & Singh, R.P. (Eds.) (1998). Foodstorage stability. CRC Press.Search in Google Scholar

44. Tharanathan, R.N. (2003). Biodegradable films and composite coatings: Past, present, and future. Trends in Food Science andTechnology, 14(3), 71-78.10.1016/S0924-2244(02)00280-7Search in Google Scholar

45. Thippeswamy, L., Venkateshaiah, B.V., & Patil, S.B. (2011). Effect of modified atmospheric packaging on the shelf stability of paneer prepared by adopting hurdle technology. Journal of Food Science andTechnology, 48(2), 230-235.10.1007/s13197-010-0155-5Search in Google Scholar

46. Vaclavik, V.A., & Christian, E.W. (2008). Sugar sweeteners, and confections. Essentials of FoodScience (3rd ed.) (pp. 331-348). New York: Springer Science+Business Media, LLC.Search in Google Scholar

47. Veiga-Santos, P., Suzuki, C.K., Nery, K.F., Cereda, M.P., & Scamparini, A.R.P. (2008). Evaluation of optical microscopy efficacy in evaluating cassava starch biofilms microstructure. LWT - Food Science and Technolog, 41(8), 1506-1513.10.1016/j.lwt.2007.09.011Search in Google Scholar

48. Vermeiren, L., Devleighere, F., van Beest, M., de Kruijf, N., & Debevere, J. (1999). Developments in the active packaging of foods. Trends in FoodScience and Technology, 10(3), 77-86.10.1016/S0924-2244(99)00032-1Search in Google Scholar

49. Vorman, I., & Tighzert, L. (2009). Biodegradable polymers. Journal of Materials, 2(2), 307-344.10.3390/ma2020307Search in Google Scholar

50. Zumbé, A., Lee, A., & Storey, D. (2001). Polyols in confectionery: The route to sugar-free, reduced sugar and reduced calorie confectionery. BritishJournal of Nutrition, 85, 31-45.10.1079/BJN2000260Search in Google Scholar

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