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Response surface modeling for hot, humid air decontamination of materials contaminated with Bacillus anthracis ?Sterne and Bacillus thuringiensis Al Hakam spores

机译:响应面建模,对受炭疽芽孢杆菌?Sterne和苏云金芽孢杆菌Al Hakam孢子污染的材料进行热湿空气净化

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Response surface methodology using a face-centered cube design was used to describe and predict spore inactivation of Bacillus anthracis ?Sterne and Bacillus thuringiensis Al Hakam spores after exposure of six spore-contaminated materials to hot, humid air. For each strain/material pair, an attempt was made to fit a first or second order model. All three independent predictor variables (temperature, relative humidity, and time) were significant in the models except that time was not significant for B. thuringiensis Al Hakam on nylon. Modeling was unsuccessful for wiring insulation and wet spores because there was complete spore inactivation in the majority of the experimental space. In cases where a predictive equation could be fit, response surface plots with time set to four days were generated. The survival of highly purified Bacillus spores can be predicted for most materials tested when given the settings for temperature, relative humidity, and time. These predictions were cross-checked with spore inactivation measurements.
机译:六种受孢子污染的材料暴露于湿热空气中后,采用面心立方设计的响应面方法描述和预测了炭疽芽孢杆菌?Sterne和苏云金芽孢杆菌Al Hakam孢子的孢子失活。对于每个应变/材料对,尝试拟合一阶或二阶模型。在模型中,所有三个独立的预测变量(温度,相对湿度和时间)均显着,但对于苏云金芽孢杆菌Al Hakam在尼龙上的时间不显着。布线绝缘和湿孢子建模不成功,因为在大多数实验空间中,孢子完全失活了。如果可以拟合预测方程,则会生成时间设置为四天的响应面图。在给定温度,相对湿度和时间设置的情况下,对于大多数测试材料,可以预测出高纯度芽孢杆菌孢子的存活。这些预测与孢子失活测量结果进行了交叉检验。

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