scholarly journals Modified Atmosphere Systems and Shelf Life Extension of Fish and Fishery Products

Foods ◽  
2016 ◽  
Vol 5 (4) ◽  
pp. 48 ◽  
Author(s):  
Christina DeWitt ◽  
Alexandra Oliveira
2021 ◽  
Author(s):  
Ardhra Vijayan ◽  
Gopalan Krishnan Sivaraman ◽  
Sivam Visnuvinayagam ◽  
Mukteswar P. Mothadaka

Fish and fishery products have drawn greater attention due to their high nutritional value owing to the presence of cheap superior quality proteins, essential fatty acids, and macro and micronutrients. But higher water content, non- protein nitrogen, and post mortem pH (6–7) in fish favor rapid spoilage by autolysis or putrefaction, and can result in health risk as well as economic loss. Moreover, the quality of fish is affected by species, harvesting season, handling and method of processing. Thus, application of food additives become necessary to maintain the shelf life, nutritional content, texture and flavor of the raw material as well as processed products. Considerable research is being done on applications of natural additives after the emergence of the concept ‘Green consumerism’ which resulted in decreased consumer preference for using synthetic food additives. In this background, this chapter will review the natural additives used for quality maintenance and shelf life extension of fish and fishery products.


2013 ◽  
Vol 63 (2) ◽  
pp. 87-94 ◽  
Author(s):  
Ranjith Kalleda ◽  
Inyee Han ◽  
Joe Toler ◽  
Feng Chen ◽  
Hyun Kim ◽  
...  

2005 ◽  
Vol 68 (10) ◽  
pp. 2201-2207 ◽  
Author(s):  
NIKOLAOS POURNIS ◽  
AIKATERINI PAPAVERGOU ◽  
ANASTASIA BADEKA ◽  
MICHAEL G. KONTOMINAS ◽  
IOANNIS N. SAVVAIDIS

The present work evaluated the quality and freshness characteristics and the effect of modified atmosphere packaging (MAP) on the shelf-life extension of refrigerated Mediterranean mullet using microbiological, biochemical, and sensory analyses. Fresh open sea red mullet (Mullus surmuletus) were packaged in four different atmospheres: M1, 10%/20%/70% (O2/CO2/N2); M2, 10%/40%/50% (O2/CO2/N2); M3, 10%/60%/30% (O2/CO2/N2); identical fish samples were packaged in air. All fish were kept under refrigeration (4 ± 0.5°C) for 14 days. Of the three gas atmospheres, the 10%/40%/50% (M2) and 10%/60%/30% (M3) gas mixtures were the most effective for inhibiting growth of aerobic microflora in mullet samples until day 10 of refrigerated storage. H2S-producing bacteria and pseudomonads were part of the mullet microflora and their growth was partly inhibited under MAP conditions. Between these two bacterial groups, H2S-producing bacteria (including Shewanella putrefaciens) were dominant toward the end of the storage period, regardless of the packaging conditions. Brochothrix thermosphacta and lactic acid bacteria were found to be members of the final microbial flora of MAP and air-packaged mullet, whereas the Enterobacteriaceae population was lower than other bacterial groups. Of the chemical freshness indices determined, thiobarbituric acid values were variable in mullet samples irrespective of packaging conditions indicative of no specific oxidative rancidity trend. Based on sensorial data and aerobic plate count, trimethylamine nitrogen and total volatile basic nitrogen limit values in the range of ca. 15 to 23 and 52 to 60 mg N/100 g of fish muscle were obtained, respectively, for mullet packaged under modified atmosphere and air. Sensory analyses (odor and taste attributes) showed that the limit of sensorial acceptability was reached after ca. 6 days for the samples packaged in air, 8 days for the M1 and M3 samples, and after 10 days for the M2 samples. Respective shelf-life extension for fresh whole mullet was ca. 2 days (M1 and M3 gas mixtures), and 4 days (M2 gas mixture).


2010 ◽  
Vol 34 (2) ◽  
pp. 399-424 ◽  
Author(s):  
POULOSE YESUDHASON ◽  
TERALANDUR KRISHNASWAMY SRINIVASA GOPAL ◽  
CHANDRAGIRI NARAYANARAO RAVISHANKAR ◽  
K.V. LALITHA ◽  
ASHOK KUMAR

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