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Computational flow cytometry of planktonic populations for the evaluation of microbiological-control programs in district cooling plants

机译:区间冷却厂微生物控制方案评价的浮游群的计算流式细胞术

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Biofouling poses a serious concern for the district cooling (DC) industry. Current industry practises for monitoring biofouling continue to rely on culture-based methods for microbial enumeration, which are ultimately flawed. Computational flow cytometric (cFCM) analyses, which offer enhanced reproducibility and streamlined analytics versus conventional flow cytometry were applied to samples taken from 3 sites in each of 3 plants over a 5-week sampling program. We asked whether the application of cFCM to monitoring planktonic community dynamics in DC plants could be able to provide sufficient information to enhance microbiological-control strategies at site and inform about plant performance impacts. The use of cFCM enabled the evaluation of biocide dosing, deep cleaning treatment efficiencies and routes of microbial ingress into the studied systems. Additionally, inherent risks arising from the reintroduction of microbiological communities into recently cleaned WCT basins from contaminated cooling waters were identified. However, short-term dynamics did not relate with plant performance metrics. In summary, the insights offered by this approach can inform on plant status, enable evaluations of microbial loads during biofouling mitigation programs and, ultimately, enhance industry management of the biofouling process.
机译:Biofouling对地区冷却(DC)行业构成了严重关注的问题。目前监测生物污染的行业实践继续依靠基于培养的微生物枚举方法,这最终缺陷。计算流式细胞统计学(CFCM)分析,其提供增强的再现性和简化的分析与常规流式细胞术分析对3个植物中的3个位点的样品,在5周的采样程序中。我们询问CFCM的应用是否能够在DC工厂监测浮游社区动态,可以提供足够的信息来提高现场微生物控制策略,并告知植物性能影响。使用CFCM的使用使杀生物剂量给药,深度清洁处理效率和微生物进入途径的评估能够进入研究的系统。此外,鉴定了从污染的冷却水的最近清洁的Microbiological Compyities中引发的固有风险来自来自受污染的冷却水域。然而,短期动态与植物性能指标无关。总之,这种方法提供的见解可以通知工厂状态,在生物污染缓解计划期间能够评估微生物载荷,并最终增强生物污染过程的行业管理。

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