Head D S, Cenkowski S, Holley R, Blank G
Department of Biosystems Engineering, University of Manitoba, Winnipeg, MB, Canada.
J Appl Microbiol. 2008 Apr;104(4):1213-20. doi: 10.1111/j.1365-2672.2007.03647.x. Epub 2007 Nov 20.
To examine the effect of processing with superheated steam (SS) on Geobacillus stearothermophilus ATCC 10149 spores.
Two inoculum levels of spores of G. stearothermophilus were mixed with sterile sand and exposed to SS at 105-175 degrees C. The decimal reduction time (D-value) and the thermal resistance constant (z-value) were calculated. The effect of cooling of spores between periods of exposure to SS was also examined. A mean z-value of 25.4 degrees C was calculated for both inoculum levels for SS processing temperatures between 130 degrees C and 175 degrees C.
Spore response to SS treatment depends on inoculum size. SS treatment may be effective for reduction in viability of thermally resistant bacterial spores provided treatments are separated by intermittent cooling periods.
There is a need for technologies that require short thermal processing times to eliminate bacterial spores in foods. The SS processing technique has the potential to reduce microbial load and to modify food texture with less energy in comparison to commonly used hot air treatment. This work provides information on the effect of SS processing parameters on the viability of G. stearothermophilus spores.
研究过热蒸汽(SS)处理对嗜热栖热放线菌ATCC 10149芽孢的影响。
将两种接种量的嗜热栖热放线菌芽孢与无菌沙子混合,在105 - 175℃下暴露于过热蒸汽中。计算十进制减少时间(D值)和热阻常数(z值)。还研究了在过热蒸汽暴露期间之间芽孢冷却的影响。对于130℃至175℃之间的过热蒸汽处理温度,两种接种量计算出的平均z值均为25.4℃。
芽孢对过热蒸汽处理的反应取决于接种量。如果处理之间有间歇冷却期,过热蒸汽处理可能有效降低耐热细菌芽孢的活力。
需要能够在短时间热处理以消除食品中细菌芽孢的技术。与常用的热风处理相比,过热蒸汽处理技术有可能以更少的能量减少微生物负荷并改变食品质地。这项工作提供了关于过热蒸汽处理参数对嗜热栖热放线菌芽孢活力影响的信息。