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首页> 外文期刊>Applied Microbiology >Thermal Death of Bacillus subtilis var. niger Spores on Selected Lander Capsule Surfaces
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Thermal Death of Bacillus subtilis var. niger Spores on Selected Lander Capsule Surfaces

机译:枯草芽孢杆菌变种的热死亡。选定的Lander胶囊表面上的尼日尔孢子

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Dry-heat sterilization of planetary lander capsules requires a knowledge of the thermal resistivity of microorganisms in the environment to which they will be subjected during sterilization of the space hardware. The dry-heat resistance of Bacillus subtilis var. niger spores on various lander capsule materials was determined at 125 C. Eight surface materials were evaluated, including a reference material, stainless steel. Survivor curves were computed, and decimal reduction times (D values) were obtained by a linear regression analysis. In four tests on stainless steel, the average value of D at 125 C was 17.07 min. The D values for the other seven materials tested ranged from 18.64 min on magnesium surfaces to 20.83 min on conversion-coated magnesium. Of the materials evaluated, the results indicate that there is only a significant difference in the thermal resistance of B. subtilis var. niger spores on conversion-coated magnesium and conversion-coated aluminum from that on the reference material, stainless steel. The differences in D values for all the test surfaces may be the result of variations in test procedures rather than the effect of the surfaces on the thermal resistivity of the spores.
机译:行星着陆舱的干热灭菌需要了解在空间硬件灭菌过程中微生物将要经受的环境中微生物的耐热性。枯草芽孢杆菌变种的耐干热性。在125℃下测定了各种着陆器胶囊材料上的尼日尔孢子。评估了八种表面材料,包括参考材料不锈钢。计算幸存者曲线,并通过线性回归分析获得十进制减少时间(D值)。在不锈钢的四个测试中,D在125°C时的平均值为17.07分钟。测试的其他七种材料的D值范围从镁表面的18.64分钟到转化涂层的镁的20.83分钟。在所评估的材料中,结果表明枯草芽孢杆菌的热阻仅存在显着差异。与标准材料(不锈钢)相比,转化涂层镁和转化涂层铝上的尼日尔孢子。所有测试表面的D值差异可能是测试程序变化的结果,而不是表面对孢子热阻率的影响。

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