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Bacterial species diversity as an indicator of dibromonitrilopropionamide (DBNPA) biocide efficacy

机译:细菌物种多样性作为二溴硝基丙唑胺(DBNPA)杀生物剂功效的指标

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摘要

Microorganism growth in industrial systems is controlled through the use of biocides and biodispersants. There is, however, no simple means of determining the efficacy of these control mechanisms, but it is currently tested using complex bacterial culturing techniques. Biolog Ecoplates~(?)have been used to detect bacterial population changes in various communities. These microtitre plates comprise 31 different carbon substrates (in triplicate) with wells. When a sample is added to the wells, bacteria capable of metabolising the relevant carbon sources respire the substrates, causing the tetrazolium dye in the well to turn purple, indicating a positive result. Hypothetically, the higher the microbial diversity, the more substrates will be utilised and vice versa . The objective of this study was to test this hypothesis, using Biolog Ecoplates~(?)as a potential simple indicator to determine the efficiency of a biocide to control microbial growth in cooling water systems by monitoring the changes in the microbial metabolic pattern. This study proved the hypothesis using Biolog Ecoplates~(?), indicating that the addition of biocides at various concentrations resulted in fewer substrates being utilised, indicative of a decrease in microbial species diversity.
机译:通过使用杀生物剂和生物分散剂来控制工业系统中的微生物生长。然而,没有简单的方法来确定这些控制机制的功效,但目前使用复杂的细菌培养技术进行测试。 Biolog渗透板〜(?)已被用于检测各个社区的细菌人口变化。这些微量滴定板包含31种不同的碳基材(三重份),孔。当样品加入到井中时,能够代谢相关的碳源的细菌呼吸基材,使得四唑染料在井中变成紫色,表明阳性结果。假设,微生物多样性越高,将利用更多的基板,反之亦然。本研究的目的是使用Biolog eCloplates〜(?)作为潜在的简单指标来测试该假设,以确定通过监测微生物代谢模式的变化来控制杀生物剂的效率以控制冷却水系统中的微生物生长。该研究证明了使用Biolog渗透板〜(α)的假设,表明在各种浓度下加入杀菌剂导致使用的较少底物,表明微生物物种的降低。

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