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Using Smart Packaging in Fish and Fish Based Product

Year 2016, Volume: 2 Issue: 1, 8 - 18, 01.11.2016

Abstract

Food packaging have three main roles during protection, preservation and storage are still involved better continuance of food quality. Evolution of civilization and improvement of new kind of foodstuffs, packaging industry must create new possibilities for preventation of food quality during shelf-life. The quality and safety of perishable food is related to microbial quality has got a significance role. Fish is a very perishable foodproduct. It is a very low acidic food and thus is very liable to the expansion of food poisoning bacteria. Also decomposition of fish can be by reason of enzymatic spoilage, oxidation and/or bacterial spoilage. Fish is an important resource of polyunsaturated fatty acids stated to have defensive effects in opposition to heartconnected diseases. Some smart packaging mechanisms liable to determine this break down incident thought storage. In this review, smart packaging technologies that could be used to detect breakdown compounds from packed fishand fish products.Keywords: Smart packaging, fish, Storage, Quality

References

  • Paine, F.A. (1991). The packaging users handbook. AVI, Van Nostrand Reinhold, New York, USA.
  • Robertson, G. (2006). Food packaging principles and practices. Taylor & Francis, Boca Raton, Fla.
  • Dainelli, D., Gontard, N., Spyropoulos, D., Zondervan-van den Beuken, E., Tobback, P., (2008). Active and intelligent food packaging: legal aspects and safety concerns. Trends in Food Science & Technology 19: 99-108.
  • Bilska, A. (2011). Packaging systems for animal origin food. LogForum 7: 1-4.
  • Yam, K. L., Takhistov, P. T., Miltz, J., (2005). Intelligent packaging: Concepts and applications. Journal of Food Science, 70: 1-10.
  • Summers, L. (1992). Intelligent packaging for quality. In Soft Drinks Management International, May, 32-33, 36.
  • Rodrigues, E. T., Han, J. H. (2003). Intelligent packaging. In D. R. Heldman (Ed.), Encyclopedia of agricultural, food, and biological engineering (p. 437). New York: Marcel Dekker Inc.
  • Gontard, N. 2006. Tailor made food packaging concept. In: IUFoST, 13th World Congress of Food Science and Technology, Food is Life, 17-21 September 2006, Nantes, France.
  • Kuswandi, B., Restyana, A., Abdullah, A., Heng, L. Y., Ahmad, M., (2012). A novel colourimetric food package label for fish spoilage based on polyaniline film. Food Control 25(1): 184-189.
  • Potyrailo, R. A., Nagraj, N., Tang, Z., Mondello, F. J., Surman, C., Morris, W., (2012). Battery-free radio frequency identification (RFID) sensors for food quality and safety. Journal of Agricultural and Food Chemistry, 60: 8535-8543.
  • Yam, K. L., Takhistov, P. T., Miltz, J., (2005). Intelligent packaging: concepts and applications. Journal of Food Science, 70: 1-10.
  • Butler, P. (2004). Smart packaging. Cambridge, UK: IDTechEx Ltd
  • Han, J. H., Ho, C. H. L. & Rodrigue, E. T. (2005). Intelligent packaging. In Han, J. H. Innovation in food packaging. Elsevier Science & Technology Books, p. 138-155.
  • Di Natale, C. D., Olafsdottir, G., Einarsson, S., Martinelli, E., Paolesse, R., D’Amico, A., (2001). Comparison and integration of different electronic noses for freshness evaluation of cod-fish fillets. Sensors and Actuators B: Chemical 77(1–2): 572– 578.
  • Gil, L., Barat, J. M., Escriche, I., García-Breijo, E., Martínez-Máñez, R., Soto, J., (2008). An electronic tongue for fish freshness analysis using a thick-film array of electrodes. Microchimica Acta 163: 121–129
  • Olafsdottir, G., Nesvadba, P., Natale, C. D., Careche, M., Oehlenschlager, J., Tryggvadottir, S. V., (2004). Multisensor for fish quality determination. Trends in Food Science and Technology 15: 86–93
  • Pons-Sánchez-Cascado, S., Vidal-Carou, M. C., Nunes, M. L., Veciana-Nogués, M. T. (2006). Sensory analysis to assess the freshness of Mediterranean anchovies (Engraulis encrasicholus) stored in ice. Food Control 17(7): 564–569.
  • Ahvenainen, R. (2003). Novel food packaging techniques. Finland: CRC Press.
  • Coles, R., McDowell, D., Kirwan, M. J. (2003). Food packaging technology. Oxford, UK: Blackwell Publishing Ltd. Kress-Rogers,
  • biosensors and immune sensors. In: Kress-Rodgers E (ed) Instrumentation and sensors for the food industry. Woodhead Publishing Ltd, Cambridge, UK, pp. 581–669. (1998).
  • Chemosensors, Kerry, J. P., O’Grady, M. N., Hogan, S.A., (2006). Past, current and potential utilisation of active and intelligent packaging systems for meat and muscle- based products: A review. Meat Sci 74:113–130.
  • Alocilja, E. C., Radke, S. M., (2003). Biosens. Bioelectron 18 (5–6): 841–846.
  • Pospiskova, K., Safarik, I., Sebela, M., Kuncova, G., (2013). Magnetic particles-based biosensor for biogenic amines using an optical oxygen sensor as a transducer. Microchem Acta 180: 311-318.
  • Arvanitoyannis, I. S., Stratakos, A. C., (2012). Application of modified atmosphere packaging and active/smart technologies to red meat and poultry: a review. Food Bioprocess Technol. 5 (5): 1423–1446
  • Devi, R., Yadav, S., Nehra, R., Yadav, S., Pundir, C. S., (2013). Electrochemical biosensor based on gold coated iron nanoparticles/chitosan composite bound xanthine oxidase for detection of xanthine in fish meat. J Food Eng 115 (2): 207–214.
  • Dolmaci, N., Çeteş, A. F., Yaşar, A., (2012). Anamperometric biosensor for fish freshness detection from xanthine oxidase immobilized in polypyrrole poly vinyl sulphonate film. Artif Cells Nanomed Biotechnol 40(4): 275–279.
  • Realini, C. E., Marcos, B., (2014). Active and intelligent packaging systems for a modern society. Meat Sci 98: 404–419.
  • Wolfbeis, O. S, List, H., “Method for quality control of packaged organic substances and packaging material for use with this method”. US Patent No: 5407829, 1995.
  • Neurater, G., Klimant, I., Wolfbeis, O. S., (1999). Microsecond life time based optical carbon dioxide sensor using luminescence resonance energy transfer. Analytica Chimica Acta 382: 67–75.
  • Mills, A., Qing-Chang, Q., Mc Murray, N., (1992). Equilibrium studies on colorimetric plastic film sensors for carbon dioxide. Anal Chem 64: 1383– 1389.
  • Kuswandi, B., Jayus, R. A., Oktaviana, R., Abdullah, A., Heng, L. Y., (2014). A novel on- package sticker sensor based on methyl red for real-time monitoring of broiler chicken cut freshness. Packag Technol Sci 27(1): 69–81.
  • Papkovsky, D. B., Smiddy, M. A., Papkovskaia, N. Y., Kerry, J. P., (2002). Nondestructive measurement of oxygen in modified atmosphere packaged hams using a phase-fluorimetric sensor system. J Food Sci 67: 3164–3169.
  • Vanderroost, M., Ragaert, P., Devlieghere, F., Meulenaer, foodpackaging: The nextgeneration. Trends Food Sci Technol 39: 47–62.
  • Nachay, K., (2007). Analyzing nanotechnology. Food Technol 61(1): 34–36. (2014).
  • Intelligent De-Azeredo, H. M. C., (2009). Nano composites for food packaging applications. Food Res Int 42: 1240–1253.
  • Liu, Y., Chakrabartty. S., Alocilja. E., (2007). Fundamental building blocks for molecular bio- wire based forward error-correcting biosensors. Nanotechnology 18: 1–6.
  • Yebo, N., Sree, S. P., Levrau, E., Detavernier, C., Hens, Z., Martens, J. A., (2012). Selective and reversible ammonia gas detection with nano porous film functionalized silicon photonic micro ring resonator. Opt Express 20: 11855–11862
  • Gardner, J. W., Bartlett, P. N., (1993). A brief history of electronic noses. Sensor Actuat B-Chem 18: 211–220.
  • Blixt, Y., Borch, E., (1999). Using an electronic nose for determining the spoilage of vacuum- packaged beef. Int J Food Microbiol 46: 123–134. Dobrucka, R., Cierpiszewski, R., (2014). Active and Intelligent Packaging Food Research and Development- A Review. Pol J Food Nutr Sci 64(1): 7–15.
  • Gòmez, A. H., Hu, G., Wang, J., Pereira, A. G., (2006). Evaluation of tomato maturity by electronic nose. Computers Electr Agric 54: 44– 52.
  • Rajamäki, T., Alatomi, H., Titvanen, T., Skyttä, E., Smolander,
  • Application of an electronic nose for quality assessment of modified atmosphere packaged poultry meat. Food Contr 17: 5–13. R.,
  • (2004). Byrne, L., Lau, K. T., Diamond, D., (2002). Monitoring of headspace total volatile basic nitrogen from selected fish species using reflectance spectroscopic measurements of pH sensitive films. Analyst 127(10): 1338–1341.
  • Pacquit, A., Lau, K. T., McLaughlin, H., Frisby, J., Quilty, B., Diamond, D., (2006). Development of a volatile amine sensor for the monitoring of fish spoilage. Talanta 69: 515–520.
  • Robertson, G. (2006). Food packaging principles and practices. Boca Raton, Fla: Taylor & Francis
  • Restuccia, D., Spizzirri, U. G, Parisi, O., Cirillo, G., Curcio, M., Iemma, F., Puoci, F., Vinci, G., Picci, N., (2010). New EU regulation aspects and global market of active and intelligent packaging for food industry applications. Food Control 21: 1425–1435.
  • URL-1, directive 95 ⁄ 149 ⁄ EEC, (1995) http://europa.eu.int/comm/ fisheries ⁄ doc_et_publ ⁄ factsheets ⁄ legal_texts ⁄ sani_en.htm
  • Taoukis, P. S., Labuza, T. P., (1989). Applicability of time-temperature indicators as shelflife monitors of food products. Journal of Food Sciences 54: 783–788.
  • Taoukis, P. S., 2008. Application of Time– Temperature Integrators for Monitoring and Management of Perishable Product Quality in the Cold Chain. In: Kerry, J. and Butler, P. (ed.), Smart Packaging Technologies for Fast Moving Consumer Goods. John Wiley&Sons Ltd., 61–74. ISBN 978-0470028025.
  • Ahvenainen, R., Hurme, E., (1997). Active and Smart Packaging for Meeting Consumer Demands for Quality and Safety. Food Additives & Contaminants 14: 753–763. ISSN 0265- 203X.
  • Otles, S., Yalcin, B., 2008. Intelligent food packaging. Log Forum 4, 4, 3. http://www. logforum.net/vol4/issue4/no3
  • Kuswandi, B., Wicaksono, Y., Jayus Abdullah, A., Lee Y. H., Ahmad, M., (2011). Smart packaging: sensors for monitoring of food quality and safety. Sensory and Instrumentation for Food Quality 5: 137–146. ISSN 1932–7587.
  • Davies, E. S., Gardner, C. D., “Oxygen indicating composition”. British Patent No: 2298273, 1996.
  • Mattila-Sandholm, T., Ahvenainen, R., Hurme, E., Ja¨rvi-Ka, ¨a¨ria ¨nen. T, “Leakage indicator”. Finnish Patent No. 94802, 1995.
  • Mattila-Sandholm, T., Ahvenainen, R., Hurme, E., Ja¨rvi-Ka¨a¨ria¨nen, T, “Oxygen sensitive colour indicator for detecting leaks in gas protected food packages”. European Patent EP No: 0666977, 1998.
  • Mitsubishi Gas Chemical, Ageless Eye oxygen indicator,
  • http://wwwmgccojp/eng/products/abc/ageless/eyeh tml Accessed 22nd September 2014
  • (2014) Packaging, Oxygen indicator labels, (2013) http://www.emcopackaging.com/index. products/oxygen-indicator-labels. Accessed 22 September 2014
  • php/ Kumar, P., Reinitz, H. W., Simunovic, J., Sandeep, K. P., Franzon, P. D., (2009). Overview of RFID technology and its applications in the food industry. Journal of Food Science 74:101-106.
  • Sarac, A., Absi, N., Dauzere-Peres, S., (2010). A literature review on the impact of RFID technologies on supply chain management. International Journal of Production Economics, 128: 77-95.
  • Preradovic, S., Karmakar, N. C. (2012). Multiresonator-based Chipless RFID: Barcode of the future. Springer (Chapter 1), New York.
  • Hwang, Y. M., Moon, J., Yoo, S., (2015). Developing A RFID-based food traceability system in Korea Ginseng Industry: focused on the business process reengineering. International Journal of Control and Automation 8: 397-406.
  • Badia-Melis, R., Ruiz-Garcia, L., Garcia-Hierro, J., Villalba, J. I. R., (2015). Refrigerated fruit storage monitoring combining two different wireless sensing technologies: RFID and WSN. Sensors, 15: 4781-4795.
  • Ariff, M. H., Ismarani, I., and Shamsuddin, N., 2014. RFID based systematic livestock health management system. In Process and control (ICSPC 2014) (pp. 111-116).
  • Uysal, I., Emond, J., and Bennett, G., 2011. Tag testing methodology for RFID enabled temperature tracking and shelf life estimation. In RFID- Technologies and Applications (RFID-TA), 2011 IEEE International Conference (pp. 8-15).

Akıllı Ambalaj Teknolojisinin Su Ürünlerinde Uygulanması

Year 2016, Volume: 2 Issue: 1, 8 - 18, 01.11.2016

Abstract

Gıda ambalajlarının gıda kalitesinin korunmasında önleyici, koruyucu ve depolama süresinde kalitenin korunması gibi üç temel görevi vardır. Globalleşmenin artması ve yeni türlerde gıda maddelerinin gelişmesiyle birlikte, ambalaj endüstrisi gıda kalitesinin depolama süresi boyunca korunması için yeni uygulamalar araştırılmaktadır. Bozulmaya karşı hassas gıdalarda kalitenin korunmasında mikrobiyal kalite son derece önemli yer tutmaktadır. Balık eti bozulmaya karşı hassas gıdalar arasındadır. Düşük aside sahip bir gıda olması sebebiyle gıda zehirlenmelerine neden olan bakterilerin oluşumuna imkan sağlayacak gıdalar arasında yer almaktadır. Ayrıca balık ürünlerinin bozulması, enzimatik yıkım, oksidasyon ve/veya bakteriyel bozulma nedeniyle gerçekleşebilmektedir. Su ürünleri çoklu doymamış yağ asitleri kaynağı olması sebebiyle kardiyovasküler hastalıklara karşı etkili olabilmektedir. Bazı akıllı ambalaj uygulamaları su ürünlerinin depolanması sırasında meydana gelen bozulmalara karşı duyarlıdır ve belirlenmesinde görev almaktadır. Bu derlemede, akıllı ambalaj teknolojisinin su ürünleri sektöründe uygulama olanaklarını incelenmiştir

References

  • Paine, F.A. (1991). The packaging users handbook. AVI, Van Nostrand Reinhold, New York, USA.
  • Robertson, G. (2006). Food packaging principles and practices. Taylor & Francis, Boca Raton, Fla.
  • Dainelli, D., Gontard, N., Spyropoulos, D., Zondervan-van den Beuken, E., Tobback, P., (2008). Active and intelligent food packaging: legal aspects and safety concerns. Trends in Food Science & Technology 19: 99-108.
  • Bilska, A. (2011). Packaging systems for animal origin food. LogForum 7: 1-4.
  • Yam, K. L., Takhistov, P. T., Miltz, J., (2005). Intelligent packaging: Concepts and applications. Journal of Food Science, 70: 1-10.
  • Summers, L. (1992). Intelligent packaging for quality. In Soft Drinks Management International, May, 32-33, 36.
  • Rodrigues, E. T., Han, J. H. (2003). Intelligent packaging. In D. R. Heldman (Ed.), Encyclopedia of agricultural, food, and biological engineering (p. 437). New York: Marcel Dekker Inc.
  • Gontard, N. 2006. Tailor made food packaging concept. In: IUFoST, 13th World Congress of Food Science and Technology, Food is Life, 17-21 September 2006, Nantes, France.
  • Kuswandi, B., Restyana, A., Abdullah, A., Heng, L. Y., Ahmad, M., (2012). A novel colourimetric food package label for fish spoilage based on polyaniline film. Food Control 25(1): 184-189.
  • Potyrailo, R. A., Nagraj, N., Tang, Z., Mondello, F. J., Surman, C., Morris, W., (2012). Battery-free radio frequency identification (RFID) sensors for food quality and safety. Journal of Agricultural and Food Chemistry, 60: 8535-8543.
  • Yam, K. L., Takhistov, P. T., Miltz, J., (2005). Intelligent packaging: concepts and applications. Journal of Food Science, 70: 1-10.
  • Butler, P. (2004). Smart packaging. Cambridge, UK: IDTechEx Ltd
  • Han, J. H., Ho, C. H. L. & Rodrigue, E. T. (2005). Intelligent packaging. In Han, J. H. Innovation in food packaging. Elsevier Science & Technology Books, p. 138-155.
  • Di Natale, C. D., Olafsdottir, G., Einarsson, S., Martinelli, E., Paolesse, R., D’Amico, A., (2001). Comparison and integration of different electronic noses for freshness evaluation of cod-fish fillets. Sensors and Actuators B: Chemical 77(1–2): 572– 578.
  • Gil, L., Barat, J. M., Escriche, I., García-Breijo, E., Martínez-Máñez, R., Soto, J., (2008). An electronic tongue for fish freshness analysis using a thick-film array of electrodes. Microchimica Acta 163: 121–129
  • Olafsdottir, G., Nesvadba, P., Natale, C. D., Careche, M., Oehlenschlager, J., Tryggvadottir, S. V., (2004). Multisensor for fish quality determination. Trends in Food Science and Technology 15: 86–93
  • Pons-Sánchez-Cascado, S., Vidal-Carou, M. C., Nunes, M. L., Veciana-Nogués, M. T. (2006). Sensory analysis to assess the freshness of Mediterranean anchovies (Engraulis encrasicholus) stored in ice. Food Control 17(7): 564–569.
  • Ahvenainen, R. (2003). Novel food packaging techniques. Finland: CRC Press.
  • Coles, R., McDowell, D., Kirwan, M. J. (2003). Food packaging technology. Oxford, UK: Blackwell Publishing Ltd. Kress-Rogers,
  • biosensors and immune sensors. In: Kress-Rodgers E (ed) Instrumentation and sensors for the food industry. Woodhead Publishing Ltd, Cambridge, UK, pp. 581–669. (1998).
  • Chemosensors, Kerry, J. P., O’Grady, M. N., Hogan, S.A., (2006). Past, current and potential utilisation of active and intelligent packaging systems for meat and muscle- based products: A review. Meat Sci 74:113–130.
  • Alocilja, E. C., Radke, S. M., (2003). Biosens. Bioelectron 18 (5–6): 841–846.
  • Pospiskova, K., Safarik, I., Sebela, M., Kuncova, G., (2013). Magnetic particles-based biosensor for biogenic amines using an optical oxygen sensor as a transducer. Microchem Acta 180: 311-318.
  • Arvanitoyannis, I. S., Stratakos, A. C., (2012). Application of modified atmosphere packaging and active/smart technologies to red meat and poultry: a review. Food Bioprocess Technol. 5 (5): 1423–1446
  • Devi, R., Yadav, S., Nehra, R., Yadav, S., Pundir, C. S., (2013). Electrochemical biosensor based on gold coated iron nanoparticles/chitosan composite bound xanthine oxidase for detection of xanthine in fish meat. J Food Eng 115 (2): 207–214.
  • Dolmaci, N., Çeteş, A. F., Yaşar, A., (2012). Anamperometric biosensor for fish freshness detection from xanthine oxidase immobilized in polypyrrole poly vinyl sulphonate film. Artif Cells Nanomed Biotechnol 40(4): 275–279.
  • Realini, C. E., Marcos, B., (2014). Active and intelligent packaging systems for a modern society. Meat Sci 98: 404–419.
  • Wolfbeis, O. S, List, H., “Method for quality control of packaged organic substances and packaging material for use with this method”. US Patent No: 5407829, 1995.
  • Neurater, G., Klimant, I., Wolfbeis, O. S., (1999). Microsecond life time based optical carbon dioxide sensor using luminescence resonance energy transfer. Analytica Chimica Acta 382: 67–75.
  • Mills, A., Qing-Chang, Q., Mc Murray, N., (1992). Equilibrium studies on colorimetric plastic film sensors for carbon dioxide. Anal Chem 64: 1383– 1389.
  • Kuswandi, B., Jayus, R. A., Oktaviana, R., Abdullah, A., Heng, L. Y., (2014). A novel on- package sticker sensor based on methyl red for real-time monitoring of broiler chicken cut freshness. Packag Technol Sci 27(1): 69–81.
  • Papkovsky, D. B., Smiddy, M. A., Papkovskaia, N. Y., Kerry, J. P., (2002). Nondestructive measurement of oxygen in modified atmosphere packaged hams using a phase-fluorimetric sensor system. J Food Sci 67: 3164–3169.
  • Vanderroost, M., Ragaert, P., Devlieghere, F., Meulenaer, foodpackaging: The nextgeneration. Trends Food Sci Technol 39: 47–62.
  • Nachay, K., (2007). Analyzing nanotechnology. Food Technol 61(1): 34–36. (2014).
  • Intelligent De-Azeredo, H. M. C., (2009). Nano composites for food packaging applications. Food Res Int 42: 1240–1253.
  • Liu, Y., Chakrabartty. S., Alocilja. E., (2007). Fundamental building blocks for molecular bio- wire based forward error-correcting biosensors. Nanotechnology 18: 1–6.
  • Yebo, N., Sree, S. P., Levrau, E., Detavernier, C., Hens, Z., Martens, J. A., (2012). Selective and reversible ammonia gas detection with nano porous film functionalized silicon photonic micro ring resonator. Opt Express 20: 11855–11862
  • Gardner, J. W., Bartlett, P. N., (1993). A brief history of electronic noses. Sensor Actuat B-Chem 18: 211–220.
  • Blixt, Y., Borch, E., (1999). Using an electronic nose for determining the spoilage of vacuum- packaged beef. Int J Food Microbiol 46: 123–134. Dobrucka, R., Cierpiszewski, R., (2014). Active and Intelligent Packaging Food Research and Development- A Review. Pol J Food Nutr Sci 64(1): 7–15.
  • Gòmez, A. H., Hu, G., Wang, J., Pereira, A. G., (2006). Evaluation of tomato maturity by electronic nose. Computers Electr Agric 54: 44– 52.
  • Rajamäki, T., Alatomi, H., Titvanen, T., Skyttä, E., Smolander,
  • Application of an electronic nose for quality assessment of modified atmosphere packaged poultry meat. Food Contr 17: 5–13. R.,
  • (2004). Byrne, L., Lau, K. T., Diamond, D., (2002). Monitoring of headspace total volatile basic nitrogen from selected fish species using reflectance spectroscopic measurements of pH sensitive films. Analyst 127(10): 1338–1341.
  • Pacquit, A., Lau, K. T., McLaughlin, H., Frisby, J., Quilty, B., Diamond, D., (2006). Development of a volatile amine sensor for the monitoring of fish spoilage. Talanta 69: 515–520.
  • Robertson, G. (2006). Food packaging principles and practices. Boca Raton, Fla: Taylor & Francis
  • Restuccia, D., Spizzirri, U. G, Parisi, O., Cirillo, G., Curcio, M., Iemma, F., Puoci, F., Vinci, G., Picci, N., (2010). New EU regulation aspects and global market of active and intelligent packaging for food industry applications. Food Control 21: 1425–1435.
  • URL-1, directive 95 ⁄ 149 ⁄ EEC, (1995) http://europa.eu.int/comm/ fisheries ⁄ doc_et_publ ⁄ factsheets ⁄ legal_texts ⁄ sani_en.htm
  • Taoukis, P. S., Labuza, T. P., (1989). Applicability of time-temperature indicators as shelflife monitors of food products. Journal of Food Sciences 54: 783–788.
  • Taoukis, P. S., 2008. Application of Time– Temperature Integrators for Monitoring and Management of Perishable Product Quality in the Cold Chain. In: Kerry, J. and Butler, P. (ed.), Smart Packaging Technologies for Fast Moving Consumer Goods. John Wiley&Sons Ltd., 61–74. ISBN 978-0470028025.
  • Ahvenainen, R., Hurme, E., (1997). Active and Smart Packaging for Meeting Consumer Demands for Quality and Safety. Food Additives & Contaminants 14: 753–763. ISSN 0265- 203X.
  • Otles, S., Yalcin, B., 2008. Intelligent food packaging. Log Forum 4, 4, 3. http://www. logforum.net/vol4/issue4/no3
  • Kuswandi, B., Wicaksono, Y., Jayus Abdullah, A., Lee Y. H., Ahmad, M., (2011). Smart packaging: sensors for monitoring of food quality and safety. Sensory and Instrumentation for Food Quality 5: 137–146. ISSN 1932–7587.
  • Davies, E. S., Gardner, C. D., “Oxygen indicating composition”. British Patent No: 2298273, 1996.
  • Mattila-Sandholm, T., Ahvenainen, R., Hurme, E., Ja¨rvi-Ka, ¨a¨ria ¨nen. T, “Leakage indicator”. Finnish Patent No. 94802, 1995.
  • Mattila-Sandholm, T., Ahvenainen, R., Hurme, E., Ja¨rvi-Ka¨a¨ria¨nen, T, “Oxygen sensitive colour indicator for detecting leaks in gas protected food packages”. European Patent EP No: 0666977, 1998.
  • Mitsubishi Gas Chemical, Ageless Eye oxygen indicator,
  • http://wwwmgccojp/eng/products/abc/ageless/eyeh tml Accessed 22nd September 2014
  • (2014) Packaging, Oxygen indicator labels, (2013) http://www.emcopackaging.com/index. products/oxygen-indicator-labels. Accessed 22 September 2014
  • php/ Kumar, P., Reinitz, H. W., Simunovic, J., Sandeep, K. P., Franzon, P. D., (2009). Overview of RFID technology and its applications in the food industry. Journal of Food Science 74:101-106.
  • Sarac, A., Absi, N., Dauzere-Peres, S., (2010). A literature review on the impact of RFID technologies on supply chain management. International Journal of Production Economics, 128: 77-95.
  • Preradovic, S., Karmakar, N. C. (2012). Multiresonator-based Chipless RFID: Barcode of the future. Springer (Chapter 1), New York.
  • Hwang, Y. M., Moon, J., Yoo, S., (2015). Developing A RFID-based food traceability system in Korea Ginseng Industry: focused on the business process reengineering. International Journal of Control and Automation 8: 397-406.
  • Badia-Melis, R., Ruiz-Garcia, L., Garcia-Hierro, J., Villalba, J. I. R., (2015). Refrigerated fruit storage monitoring combining two different wireless sensing technologies: RFID and WSN. Sensors, 15: 4781-4795.
  • Ariff, M. H., Ismarani, I., and Shamsuddin, N., 2014. RFID based systematic livestock health management system. In Process and control (ICSPC 2014) (pp. 111-116).
  • Uysal, I., Emond, J., and Bennett, G., 2011. Tag testing methodology for RFID enabled temperature tracking and shelf life estimation. In RFID- Technologies and Applications (RFID-TA), 2011 IEEE International Conference (pp. 8-15).
There are 65 citations in total.

Details

Other ID JA66SV43BR
Journal Section Research Article
Authors

Elif Tuğçe Aksun This is me

Publication Date November 1, 2016
Submission Date November 1, 2016
Published in Issue Year 2016 Volume: 2 Issue: 1

Cite

APA Aksun, E. T. (2016). Using Smart Packaging in Fish and Fish Based Product. Turkish Journal of Maritime and Marine Sciences, 2(1), 8-18.

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