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2018 | OriginalPaper | Chapter

Ionizing Irradiation of Chilled Meat Raw Materials as the World’s Leading Technology

Authors : Roza Timakova, Sergey Tikhonov, Natalia Tikhonova

Published in: Leadership for the Future Sustainable Development of Business and Education

Publisher: Springer International Publishing

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Abstract

Market demand and consumer preferences are formed on the basis of decisions that are made by individual consumers in accordance with their desires, needs, and financial resources. Currently, one of the competitive advantages of Russian consumer market is a stable supply of high-quality chilled meat raw materials and meat products from chilled meat. Today, the needs of the RF (Russian Federation) population in pork and poultry meat are fully covered. The largest share in total production is taken by chilled products: beef (80.9%), pork (94.1%), and poultry (64.1%). In this regard, the improvement of traditional ways and the introduction of new ways to extend the shelf life (storage term) of chilled meat are urgent areas of scientific research. Along with the well-known methods of preventing the growth of microorganisms and the development of oxidative processes in meat, the processing of ionizing radiation of poultry meat, beef, lamb, and pork is officially authorized. On the territory of the Russian Federation, radiation treatment of meat (except for poultry meat, rabbit meat, and horse meat) has been allowed only since July 2017, but at the same time, rational dose of radiation for each type of meat has not yet been determined. Studies on the processing of cooled beef through ionizing radiation were conducted in order to determine the rational radiation doses. It is established that the exposition of chilled beef to ionizing radiation hampers the development of microbiological damage and does not adversely affect the organoleptic characteristics and nutritional value of meat raw materials. The processing of chilled meat raw materials allows to increase their shelf life by three or more times, which makes it possible to consider the exposition to ionizing radiation of meat as the world’s leading technology of preserving it. A rational dose of irradiation of chilled beef was determined depending on the fat content.

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Literature
go back to reference Brewer MS (2009) Irradiation effects on meat flavor: a review. Meat Sci 81(1):1–14CrossRef Brewer MS (2009) Irradiation effects on meat flavor: a review. Meat Sci 81(1):1–14CrossRef
go back to reference Kraybill HF (1958) Nutritional and biochemical aspects of foods preserved by ionizing-radiation. J Home Econ 50(9):695–700 Kraybill HF (1958) Nutritional and biochemical aspects of foods preserved by ionizing-radiation. J Home Econ 50(9):695–700
go back to reference Molins RA (2001) Food irradiation: principles and applications, 1st edn. Wiley, New York. 488 p Molins RA (2001) Food irradiation: principles and applications, 1st edn. Wiley, New York. 488 p
go back to reference Rozhdestvenskaya LN, Bryazgin MB, Korobeynikov MV (2006) Predposylki i osnovanya ispolzovanya ioniziruyuschego izluchenya dla obrabotki pischevoy produktsii [Determinants and reasons for using ionizing radiation for processing food production]. Pischevaya Promyshlennost 11:39–45 Rozhdestvenskaya LN, Bryazgin MB, Korobeynikov MV (2006) Predposylki i osnovanya ispolzovanya ioniziruyuschego izluchenya dla obrabotki pischevoy produktsii [Determinants and reasons for using ionizing radiation for processing food production]. Pischevaya Promyshlennost 11:39–45
go back to reference Sakata R (2015) Tendenstiya razvitiya tekhnologiy i issledovaniy myasa i myasnykh produktov v Yaponii [Tendency and development of technology and research of meat and meat products in Japan]. All About Meat 1:20–24 Sakata R (2015) Tendenstiya razvitiya tekhnologiy i issledovaniy myasa i myasnykh produktov v Yaponii [Tendency and development of technology and research of meat and meat products in Japan]. All About Meat 1:20–24
go back to reference Savage GP, Dutta PC, McNeil DL (1999) Fatty acid and tocopherol contents and oxidative stability of walnut oils. J Am Oil Chem Soc 76(9):1059–1063CrossRef Savage GP, Dutta PC, McNeil DL (1999) Fatty acid and tocopherol contents and oxidative stability of walnut oils. J Am Oil Chem Soc 76(9):1059–1063CrossRef
go back to reference Sommers CH, Fan X (eds) (2008) Food irradiation research and technology, 1st edn. Wiley-Blackwell, New York. 336 p Sommers CH, Fan X (eds) (2008) Food irradiation research and technology, 1st edn. Wiley-Blackwell, New York. 336 p
go back to reference Tikhonov RS, Anashkin AV, Kryukov AE (2013) Ispolzovanyje radiotsionnykh tekhnologyj v selskokhozaystvennom proizvodstve [Using radiation technologies in agricultural production]. Sbornik nauchnyhkh trudov GNU SNIIZH 6:330–333 Tikhonov RS, Anashkin AV, Kryukov AE (2013) Ispolzovanyje radiotsionnykh tekhnologyj v selskokhozaystvennom proizvodstve [Using radiation technologies in agricultural production]. Sbornik nauchnyhkh trudov GNU SNIIZH 6:330–333
go back to reference Timakova RТ, Tikhonov SL, Tararkov AN, Kudryashov LS (2016) Otsenka radiatsionnoy bezopasnosti okhlazhdennogo myasa s ispolzovanyem metoda elektronnogo paramagnitnogo rezonansa [Evaluation of the radiation safety of cooled meat using the method of electronic paramagnetic resonance]. Teoria i praktika pererabotki myasa 3:39–47. https://doi.org/10.21323/2414-438X-2016-1-3-57-65. Timakova RТ, Tikhonov SL, Tararkov AN, Kudryashov LS (2016) Otsenka radiatsionnoy bezopasnosti okhlazhdennogo myasa s ispolzovanyem metoda elektronnogo paramagnitnogo rezonansa [Evaluation of the radiation safety of cooled meat using the method of electronic paramagnetic resonance]. Teoria i praktika pererabotki myasa 3:39–47. https://​doi.​org/​10.​21323/​2414-438X-2016-1-3-57-65.​
go back to reference Timakova RT, Tikhonov SL, Tikhonova NV (2017) Razrabotka metodiki opredelenya pogloschennykh doz dla raznykh vidov radiotsionno-obrabotannogo myasa [Development of methodology for estimating the absorbed doses for various types of radiation-processed meat]. Polzynovsky Vestnik 1:13–18 Timakova RT, Tikhonov SL, Tikhonova NV (2017) Razrabotka metodiki opredelenya pogloschennykh doz dla raznykh vidov radiotsionno-obrabotannogo myasa [Development of methodology for estimating the absorbed doses for various types of radiation-processed meat]. Polzynovsky Vestnik 1:13–18
Metadata
Title
Ionizing Irradiation of Chilled Meat Raw Materials as the World’s Leading Technology
Authors
Roza Timakova
Sergey Tikhonov
Natalia Tikhonova
Copyright Year
2018
DOI
https://doi.org/10.1007/978-3-319-74216-8_63

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