[Microbial emission, immission and changes in the germ count in the cooling water during operation of wet cooling towers. IV. Communication: microbial immission in the vicinity of wet cooling towers (author's transl)].

K Botzenhart, W Egler, Y Attar, G Ernst, P Fischer, L Krizek, D Wurz
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Abstract

From the emission rates of the bacterial cooling tower emission determined in field measurements (see Comm. II) the mortality rate of enterbacteria on soil, grass and solid surfaces and the mortality rate in the atmosphere taken from literature the immission rates and the long-term effect on microbial surface flora were calculated and compared with our own measurements. The values used in the calculations include large margins for error. The atmospheric germ counts determined by experiment were no higher than the calculated values; they fluctuated in terms of concentration between 20 KBE m-3 and 200 KBE m-3 in ranges which were measured in areas with little or no anthropogenic influences. The maximum long-term surface load which occurs under these assumptions is 2.3.10(5) KBE M-2. This relatively small additional load (approx. 10(-3%) would hardly be noticeable in a number of colonies of approximately 10(10) KBE m-2 normally occurring in soil and grass samples.

[湿式冷却塔运行过程中冷却水微生物的排放、排放及细菌数量的变化。]四、通讯:湿式冷却塔附近的微生物排放[作者译文]。
根据现场测量确定的细菌冷却塔排放物的排放率(见Comm. II)、土壤、草地和固体表面上肠道细菌的死亡率以及文献中大气中的死亡率,计算排放率和对微生物表面菌群的长期影响,并与我们自己的测量结果进行比较。计算中使用的值包括较大的误差幅度。实验测定的大气细菌数不高于计算值;它们的浓度在20 KBE -3和200 KBE -3之间波动,其范围是在很少或没有人为影响的地区测量的。在这些假设下发生的最大长期地表荷载为2.3.10(5)KBE M-2。这个相对较小的额外负载(大约为。10(-3%)在通常出现在土壤和草样品中的大约10(10)KBE m-2的一些菌落中几乎不明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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