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Ethylene Oxide Gaseous Sterilization I. Concentration and Temperature Effects

机译:环氧乙烷气态灭菌I.浓度和温度影响

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The relationships of reaction temperature and concentration of gaseous ethylene oxide to the time required for inactivation of air-dried Bacillus subtilis var. niger spores are more complex than previously reported. A plot of temperature vs. the logarithm of “thermochemical death time” (TCDT) resulted in a straight line between 18 and 57 C for systems of “high” ethylene oxide concentration. The TCDT values were independent of ethylene oxide concentrations above certain temperature-dependent limits. A given ethylene oxide concentration produced a TCDT curve identical in the upper temperature regions with that for higher concentrations. As the temperature was lowered beyond a critical point, this curve diverged from that for higher concentrations, as a straight line of lesser slope. Thus, a series of curves exists for a range of ethylene oxide concentrations. They are characterized by two segments, both logarithmic, intersecting at a critical temperature for each concentration. The intersecting point is at a temperature inversely related to the ethylene oxide gas concentration. The temperature quotient for the high temperature segments of all systems was 1.8. This value was characteristic for ethylene oxide concentrations of 440 and 880 mg/liter at temperatures above 40.6 and 33.4 C, respectively. Below these critical temperatures, the Q10 values for the respective systems were 3.2 and 2.3.
机译:反应温度和气态环氧乙烷浓度与风干枯草芽孢杆菌变质所需时间的关系。尼日尔孢子比以前报道的要复杂。温度与“热化学死时间”(TCDT)的对数的关系图针对“高”环氧乙烷浓度的系统得出了18至57 C之间的直线。 TCDT值与高于某些温度相关极限的环氧乙烷浓度无关。给定的环氧乙烷浓度在较高温度区域产生的TCDT曲线与较高浓度的区域相同。当温度降低到超过临界点时,该曲线与较高浓度的曲线偏离,为一条较小斜率的直线。因此,对于一系列环氧乙烷浓度存在一系列曲线。它们的特征是两个片段都是对数的,每个浓度在临界温度下相交。相交点处于与环氧乙烷气体浓度成反比的温度。所有系统的高温段的温度商为1.8。该值对于在高于40.6和33.4℃的温度下分别为440和880mg /升的环氧乙烷而言是特征性的。在这些临界温度以下,各个系统的Q10值为3.2和2.3。

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