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Appl Environ Microbiol. 1974 April; 27(4): 724-732
Copyright © 1974 American Society for Microbiology. All Rights Reserved.

Microbiology of the Frankfurter Process: Salmonella and Natural Aerobic Flora

S. A. Palumbo, C. N. Huhtanen and J. L. Smith

1 Agricultural Research Service, Eastern Regional Research Center, Philadelphia, Pennsylvania 19118

ABSTRACT

Salmonella senftenberg 775W added to frankfurter emulsion was killed during normal processing in the smoke house when internal product temperature was 71.1 C (160 F) or above. The thermal destruction point of S. senftenberg 775W in frankfurters (temperature at which no viable cells were detected) was a function of the length of time of the process rather than of the starting number of cells. Heating of frankfurters to 73.9 C (165 F) substantially reduced the total non-salmonella count. For total non-salmonella bacterial flora and salmonella, relatively little thermal destruction occurred below 43.3 C (110 F). The heating step can bring about a 7-log cycle decrease (108 to 101/g) of bacteria present in the raw emulsion. The flora of this high-bacteriological-count raw emulsion was predominantly gram-negative rods. Variation in the number of bacteria (both total and salmonella) surviving at various temperatures during processing was attributed to slight variations in the temperature pattern of the smoke house during its operation. An integration process was devised which allowed calculation of exposure to temperatures above 110 F (43.3 C) on the basis of degree-minutes. Plots of degree-minutes versus log of surviving bacteria were linear. The salmonella plot had a greater slope than that of the total non-salmonella flora, indicating that salmonellae are more heat sensitive than the bacterial population as a whole. The predominant bacteria surviving the heating step were micrococci. These micrococci were able to increase in number in or on the frankfurters during storage at 5 C.


Appl Environ Microbiol. 1974 April; 27(4): 724-732
Copyright © 1974 American Society for Microbiology. All Rights Reserved.







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