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Improvement of the intersection method for the quantification of filamentous organisms: basis and practice for bulking and foaming bioindication purposes

机译:改进用于定量丝状生物的相交方法:膨胀和起泡生物指示目的的基础和实践

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Bulking and foaming phenomena in activated sludge wastewater treatment plants are in most cases related to the abundance of filamentous microorganisms. Quantifying these microorganisms should be a preliminary stage in their control. In this paper, the simplicity of quantifying them based on the intersection method is demonstrated, by redescribing the theory and applying a new improved protocol; new data of interest are also provided. The improved method allows us to use it with stained smears, including epifluorescence techniques. The error that could be made, when considering the distribution of filamentous bacteria in fresh microscope preparations in two dimensions rather than three is negligible. The effect of the different types of filamentous microorganisms on the settleability was also studied. The effect of the total extended filament length on the sludge settleability was shown to depend on the type of filamentous organism and how it aggregates. When these groups of filamentous organisms are found in small aggregations and there is an increase in the number of filamentous organisms, the sludge volume index (SVI) increases proportionally to the filament length. However, when aggregation increases, the impact on the SVI is significantly lower.
机译:在大多数情况下,活性污泥废水处理厂的膨胀和起泡现象与丝状微生物的数量有关。量化这些微生物应该是其控制的初步阶段。在本文中,通过重述理论并应用新的改进协议,证明了基于交集方法进行量化的简单性。还提供了感兴趣的新数据。改进的方法使我们可以将其与染色涂片一起使用,包括落射荧光技术。当考虑新鲜显微镜制品中丝状细菌在二维而不是三维中的分布时,可以产生的误差可以忽略不计。还研究了不同类型的丝状微生物对沉降能力的影响。结果表明,总长丝长度对污泥沉降能力的影响取决于丝状生物的类型及其聚集方式。当发现这些组的丝状生物体聚集较小且丝状生物体数量增加时,污泥体积指数(SVI)与丝状体长度成比例地增加。但是,当聚合增加时,对SVI的影响会大大降低。

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