[湿式冷却塔运行过程中冷却水微生物排放、排放及细菌数量变化]通讯:测定冷却塔烟气中大肠杆菌还原动力学的实验室试验[作者简介]。

E Baer, J Billing, G Ernst, H P Werner, D Wurz
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摘要

本文报道了测定微生物还原率的实验室试验。这项研究是用纯培养的大肠杆菌进行的,大肠杆菌是肠杆菌群的一种细菌类型。通过对热力学参数的适当变化,可以模拟冷却塔烟柱在冷却塔烟囱内通过以及与周围空气混合的情况。结果允许在湿式冷却塔羽流中细菌计数的以下变化是预期的:只要冷却塔的羽流中含有飞沫,携带的细菌形成菌落的能力就不会发生实质性的变化。2. 在不饱和羽流的情况下,我们必须区分两种情况:a)在没有任何二次空气混合物的情况下,将细菌悬浮液喷洒到不饱和空气中的试验,没有显示出减少率与相对湿度有任何关系。b)与此相反,通过混合一股不饱和二次空气蒸发携带细菌的液滴的试验表明,随着相对空气湿度的降低,形成菌落的能力明显下降。情况b)对于细菌从冷却塔传播和排放是重要的,因为在这里,最初满载液滴的可见羽流也被不饱和环境空气的混合物干燥。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Microbial emission, immission and changes in the germ count in the cooling water during operation of wet cooling towers III. communication: laboratory tests for the determination of the reduction kinetics of Escherichia coli in cooling tower plumes (author's transl)].

The present paper reports on laboratory tests for the determination of the reduction rate of micro-organisms. The investigations were carried out with a pure culture of E. coli, a germ type from the enterobacterial group. By a suitable variation of the thermodynamic parameters it was possible to simulate the conditions through which the cooling tower plume passes inside the chimney of the cooling tower and when it mixes with ambient air. The results allow the following changes in the germ counts in the plume of a wet cooling tower to be expected: 1. As long as the cooling tower plume contains droplets, the capacity of the carried germs to form colonies does not change materially. 2. In the case of unsaturated plumes we must distinguish between two situations: a) The tests in which the germ suspension was sprayed into unsaturated air without any admixture of secondary air, did not demonstrate any dependence of the reduction rate on the relative humidity. b) In contrast to this, the tests in which the germ-carrying droplets were evaporated by admixing a stream of unsaturated secondary air, showed that the capacity to form colonies clearly decreased with diminishing relative air humidity. Case b) is of importance for the dissemination and immission of germs from cooling towers, because here, too, the visible plume initially laden with drops is dried by the admixture of unsaturated ambient air.

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