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Implementation of glycogen accumulating bacteria in treating nutrient-deficient wastewater

机译:糖原积累细菌在处理营养不良废水中的实施

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Activated sludge treatment of nutrient-deficient wastes may lead to severe slime formation and consequent biomass separation difficulties. The purpose of this paper has been to show that bioreactor arrangement essentially influences the manner of biological excess carbon removal. In a comparative lab-scale experiment two differently arranged activated sludge systems were operated simultaneously: an aerated CSTR with an aerobic selector and an aerated CSTR with an anaerobic selector. The seed derived from an anaerobic/aerobic activated sludge plant of a winery. The model wastewater contained wine, sugar and acetic acid as organic carbon sources and lacked nutrients regarding both N and P, similarly to the influent of the full-scale plant. During the 52 days of the experiment the SVI values of the fully aerated system increased up to 600-800 cm(3) g(-1) whereas those of the anaerobic/aerobic system remained below 250 cm(3) g(-1). The SVI values showed a strict correlation with the amount of extracellular polysaccharides. In the anaerobic/aerobic experimental system, the high (40% of MLSS) intracellular polysaccharide content of the seed could be maintained. Besides the analytical data, also the microscopic observations of the biomass structure referred to the presence of glycogen accumulating organisms in both the lab-and full-scale anaerobic/aerobic systems. [References: 9]
机译:缺乏营养的废物的活性污泥处理可能导致严重的煤泥形成,并因此造成生物质分离困难。本文的目的是表明生物反应器的布置基本上会影响生物去除多余碳的方式。在实验室规模的比较实验中,同时操作了两种不同布置的活性污泥系统:带有好氧选择器的充气CSTR和带有厌氧选择器的充气CSTR。种子来自酒厂的厌氧/好氧活性污泥植物。模型废水包含酒,糖和乙酸作为有机碳源,并且缺乏关于氮和磷的养分,这与大型工厂的进水类似。在实验的52天中,完全充气系统的SVI值增加到600-800 cm(3)g(-1),而厌氧/好氧系统的SVI值保持在250 cm(3)g(-1)以下。 SVI值显示出与细胞外多糖的量严格相关。在厌氧/好氧实验系统中,可以保持种子的高(40%MLSS)细胞内多糖含量。除分析数据外,生物量结构的微观观察还指实验室和全规模厌氧/好氧系统中均存在糖原累积生物。 [参考:9]

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