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Use of a microbial sensor: inhibition effect of azo-reactive dyes on activated sludge

机译:微生物传感器的使用:偶氮反应性染料对活性污泥的抑制作用

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This paper summarizes the methodology utilized for measuring the toxic and inhibitory effects of azo-reactive dyes on the activity of activated sludge. The microbial sensor employed in this study consisted of a small-fluidized bed reactor in which the microbial mass was immobilized on spherical (diameter = 1-2 mm) reticulated sinter glass carriers. To sustain a highly dense population of aerobic microbes, pure oxygen was supplied via a cylindrical chamber, which comprised part of the sample re-circulation system. The mean hydraulic retention time in the microbial sensor ranged between 30 and 40 min, while temperature was maintained at 30℃ and pH at 6.4. Inhibition of microbial activity (toxicity) was determined as the mean percent reduction in carbon dioxide production from microorganisms' respiration. Several azo-reactive dyes demonstrated toxicity when applied at a high concentration (2 g/l), however, a portion of the microbes showed tolerance to the dyes. Moreover, textile wastewater demonstrated very efficient biodegradation.
机译:本文总结了用于测量偶氮反应性染料对活性污泥活性的毒性和抑制作用的方法。这项研究中使用的微生物传感器由一个小型流化床反应器组成,其中微生物块固定在球形(直径= 1-2 mm)的网状烧结玻璃载体上。为了维持高密度的好氧微生物种群,通过圆柱形腔室提供了纯氧气,该腔室是样品再循环系统的一部分。微生物传感器中的平均水力停留时间为30至40分钟,温度保持在30℃,pH保持在6.4。将抑制微生物活性(毒性)确定为微生物呼吸产生的二氧化碳的平均减少百分比。几种偶氮反应性染料以高浓度(2 g / l)施用时显示出毒性,但是,部分微生物对染料具有耐受性。此外,纺织废水显示出非常有效的生物降解作用。

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