再生水中细菌生长势的测定。

N Funamizu, M Kanno, T Takakuwa
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引用次数: 0

摘要

本文的目的是展示一种使用直接微生物总数(DTMC)的生物测定方法,并证明该方法对再生水的适用性,以评估其细菌生长的潜力。我们将该方法应用于四种再生水,在生物测定过程中测量DTMC和溶解有机碳的时间过程。实验结果总结如下:1)通过调节有机碳可以控制细菌的生长。2)降低细菌的初始浓度可有效延缓其生长,但不能控制其最大水平。这意味着在消毒过程的设计和运行中应考虑中水储运系统的停留时间。3)臭氧化提高了生长潜力。碳吸附工艺降低了生物稳定性,但臭氧加碳吸附工艺不能提高生物稳定性。4) DTMC与生物可降解有机碳之间存在线性关系,但这种线性关系的梯度取决于再生水的来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of bacterial growth potential in a reclaimed water.

The objectives of this paper are to show a bio-assay method using direct total microbial count (DTMC) and to demonstrate the applicability of this method to reclaimed water for evaluating its potential of bacterial growth. We have applied our method to four types of reclaimed water, measuring the time course of DTMC and dissolved organic carbon in a bio-assay process. The experimental findings are summarised as follows: 1) By regulating organic carbon, bacteria growth could be controlled. 2) Reduction of the initial concentration of bacteria was effective to delay their growth, but this operation could not control their maximum level. This implies that the retention time of the storage and distribution system of reclaimed water should be considered in design and operation of the disinfection process. 3) Ozonation increased the growth potential. Carbon adsorption process reduced it, but the ozone plus carbon adsorption process could not improve the biological stability. 4) A linear relationship between DTMC and biodegradable organic carbon has been observed, the gradient of this linear correlation, however, depended on the source of reclaimed water.

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