Item Details

Title: Effect of packaging methods on the storage stability of dried
capelin under simulated temperature and humidity conditions

Date Published: 2016
Author/s: S.E. Tinyiro1, M. G Karlsdour R E. Wasik and M. Masete
Data publication:
Funding Agency :
Copyright/patents/trade marks: ©2016, National Agricultural Research Organisation
Journal Publisher: NARO
Affiliation: 'Food Biosciences and Agribusiness Research Programme. National agricultural research Laboratories, P. O. Box 7852, Kampala. Uganda
Keywords: Lipid oxidation, Mallotus villosus, vacuum packaging

Abstract:

Small pelagic fish have grown in importance for the for the food and nutrition of people
developing countries. The goal of this study was to improve the storage of stability of dried small
pelagic fish (Capelin - Mallotus villosus) using appropriate packaging methods. Commercially
dried capelin was packaged using conventional air packaging (AP), vacuum packaging (VP),
modified atmosphere packaging (MAP, 99.9% N,) and hessian bags (HB) before storage at
simulated temperature and humidity conditions of Uganda (relative humidity H” 54 and 83%;
temperature H” 30 and 17 °C, respectively) for 8 weeks. Chemical and microbiological stability
of the dried capelin was assessed with respect to packaging methods. Water content and water
activity increased significantly (p<0.05) for the HB packed capelin (12.7 ? 17,6% and 0.6 -
0.7, respectively). Lipid content decreased significantly (p<0.05) towards the end of storage in
the I IB packed dried capelin. Primary lipid oxidation (peroxide value) was lowest in the vacuum
packed dried capelin (31.5-53.5 iniol kg*1). Secondary lipid oxidation (TBARS) decreased
significantly (p<0.05) with storage time in the modified atmosphere packed dried capelin
(250.3 -152.9 imol MDA kg ?). Free fatty acid content of dried capelin increased throughout
storage irrespective of the packaging method. Total microbial count decreased significantly
(p<0.05) in the vacuum packed dried capelin (4.8 ? 3.6 log efu g*1); while mould counts increased
significantly (p<0.05) in the HB packed dried capelin (1.0 - 3.0 log efu g*1). VP and MAP
enhanced the storage stability of dried Capelin.