Broiler skin color as affected by organic acids: influence of concentration and method of application
Open Access
- 1 May 1998
- journal article
- research article
- Published by Elsevier in Poultry Science
- Vol. 77 (5), 752-757
- https://doi.org/10.1093/ps/77.5.752
Abstract
Color of broiler skin was evaluated after exposure to organic acids under various concentrations and simulated potential plant application conditions. Breast skin from chilled broiler carcasses was treated with acetic (AA), citric (CA), lactic (LA), malic (ML), mandelic (MN), propionic (PA), or tartaric (TA) acids at 0.5, 1, 2, 4, and 6% concentrations. Each acid and concentration was applied in simulated dip (23 C for 15 s), scalder (50 C for 2 min), and immersion chiller (1 C for 60 min) conditions. A tap water control was included with each application method. Objective color values of L* (lightness), a* (redness), and b* (yellowness) were measured before and after the treatments to calculate color differentials under a factorial arrangement of organic acids and concentrations. Skin lightness increased (P < 0.01) in simulated chiller as compared to dip and scalder applications. Skin redness was reduced significantly in scalder, and yellowness in dip and scalder applications, respectively. In simulated dip application, with the exception of PA, all acids decreased lightness and increased redness and yellowness values. Propionic acid had little affect on lightness and redness values, but decreased yellowness values. In simulated scalder application, with the exception of PA, all acids decreased lightness with increasing concentration. The redness values changed little in scalder application. However, yellowness values were increased with all acids, except for PA, which decreased yellowness values. In simulated chiller conditions, all acids, except for PA, decreased lightness and redness and increased yellowness values. Propionic acid increased lightness and decreased yellowness values significantly in chiller conditions. Alterations in skin color should be taken into account in the selection and application of organic acids as carcass disinfectants.Keywords
This publication has 22 references indexed in Scilit:
- Skin Attachment Model for Improved Laboratory Evaluation of Potential Carcass Disinfectants for their Efficacy Against Salmonella Attached to Broiler SkinJournal of Food Protection, 1994
- The Effect of an Acetic Acid Dip on Carcass Appearance, Microbiological Quality, and Cooked Breast Meat Texture and FlavorPoultry Science, 1994
- An Evaluation of a Rinse Procedure Using Sodium Bicarbonate and Hydrogen Peroxide on the Recovery of Bacteria from Broiler CarcassesPoultry Science, 1993
- Microbiological Decontamination of Food Animal Carcasses by Washing and Sanitizing Systems: A ReviewJournal of Food Protection, 1992
- EFFECTS OF LACTIC ACID IN PROCESSING WATERS ON THE INCIDENCE OF SALMONELLAE ON BROILERSJournal of Food Quality, 1990
- The Effect of pH Adjustment on the Microbiology of Chicken Scald‐tank Water with Particular Reference to the Death Rate of SalmonellasJournal of Applied Bacteriology, 1981
- The Effect on Xanthophyll Content and Color of Broiler Skin When Scald Additive Concentration Was Measured by pH ,Poultry Science, 1975
- The Effect of Scalding Conditions on the Xanthophyll Content and Color of Broiler SkinPoultry Science, 1974
- The Xanthophyll Content and Color of Broiler Skin After ScaldingPoultry Science, 1973
- The effect of chlorination on chicken carcasses infected with SalmonellaeEpidemiology and Infection, 1961