Title of article
Optimization of supercritical carbon dioxide treatment for the inactivation of the natural microbial flora in cubed cooked ham
Author/Authors
Ferrentino، نويسنده , , Giovanna and Balzan، نويسنده , , Sara and Spilimbergo، نويسنده , , Sara، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
8
From page
189
To page
196
Abstract
This study aims to investigate the effects of supercritical carbon dioxide (SC-CO2) treatment on the inactivation of the natural microbial flora in cubed cooked ham. Response surface methodology with a central composite design was applied to determine the optimal process conditions and investigate the effect of three independent variables (pressure, temperature and treatment time). Additionally, analyses of texture, pH and color together with a storage study of the product were performed to determine its microbial and qualitative stability.
se surface analysis revealed that 12 MPa, 50 °C, 5 min were the optimal conditions to obtain about 3.0, 1.6, and 2.5 Log(CFU/g) reductions of mesophilic aerobic bacteria, psychrophilic bacteria and lactic acid bacteria respectively. Inactivation to undetectable levels of yeasts and molds and coliforms was also obtained. A storage study of 30 days at 4 °C was carried out on the treated product (12 MPa, 50 °C, 5 min) monitoring microbial growth, pH, texture, and color parameters (L*, a*, b* and ΔE). Microbial loads slightly increased and after 30 days of storage reached the same levels detected in the fresh product. Color parameters (L⁎, a⁎, b⁎) showed slight variations while pH and texture did not change significantly.
basis of the results obtained, SC-CO2 can be considered a promising technique to microbiologically stabilize cubed cooked ham and, in general, cut/sliced meat products without affecting its quality attributes.
Keywords
Supercritical carbon dioxide , Cubed cooked ham , Quality attributes , Natural microbial flora
Journal title
International Journal of Food Microbiology
Serial Year
2013
Journal title
International Journal of Food Microbiology
Record number
2117983
Link To Document