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首页> 外文期刊>Applied and Environmental Microbiology >Survival in lake water of Klebsiella pneumoniae discharged by a paper mill.
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Survival in lake water of Klebsiella pneumoniae discharged by a paper mill.

机译:造纸厂排放的肺炎克雷伯菌在湖水中的存活情况。

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We investigated survival of Klebsiella pneumoniae in freshwater, by determining bacterial densities at eight temperatures between 0 and 20 degrees C at various distances from the discharge area in a lake receiving bacteria mainly from a paper mill. An mFC-inositol-carbenicillin-agar medium was used for Klebsiella enumeration by the membrane filter method. About 90% of the bacteria forming typical colonies on this medium were identified as Klebsiella species. About 10% of the bacteria were false positive, and, an equal percentage were false negative. Semilogarithmic plots of bacterial densities as a function of distance were found to be linear, with slopes depending on water temperature. The average velocity of the flow was estimated from the travel-of-bacterial-density minima caused by production stops. Regression equations were calculated for the dependence of death rate on temperature alone and on both temperature and discharge. The temperature coefficient (Q10) of the death rate was estimated to be 2.1 +/- 0.4. The decimal reduction time (T90) of K. pneumoniae at 0 degrees C was calculated to be about 24 days, and that at 20 degrees C was slightly over 5 days. The regression model was verified by independent observations. Factors affecting the reliability of the estimates were evaluated.
机译:我们通过确定主要从造纸厂接收细菌的湖泊中离排放区不同距离的0至20摄氏度之间的八个温度下的细菌密度,研究了肺炎克雷伯菌在淡水中的存活情况。通过膜滤器方法,将mFC-肌醇-卡宾西林-琼脂培养基用于克雷伯菌计数。在该培养基上形成典型菌落的细菌中约有90%被鉴定为克雷伯菌属。大约10%的细菌为假阳性,而相等百分比的细菌为假阴性。发现细菌密度的半​​对数图随距离变化是线性的,其斜率取决于水温。根据生产停止引起的细菌密度最小值的移动来估计平均流速。针对死亡率与温度的关系以及温度与放电的关系,计算了回归方程。死亡率的温度系数(Q10)估计为2.1 +/- 0.4。计算出肺炎克雷伯菌在0摄氏度时的十进制减少时间(T90)为大约24天,而在20摄氏度时为5天以上。回归模型通过独立观察得到验证。评估影响估计可靠性的因素。

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