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PHOSPHORUS DEFFICIENCY AND SLUDGE BULKING

机译:磷缺乏症和污泥膨胀

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Separation by settling is one of the most troublesome stages of an activated sludge process. A decrease in the efficiency of separation of microbial biomass from the treated effluent causes a decrease in the overall efficiency of the treatment plant. One of the most common problems in activated sludge systems to negatively influence the settleability is sludge bulking which can be defined as non-settling situation of microbial mass. The main objective of this study is to find out the effect of phosphorus deficiency on bulking of activated sludge. In order to achieve this aim, the effects of a strictly phosphorus limited environment was investigated by running 6 semi-continuous activated sludge reactors. Since the specific aim of the study is to identify the effects of magnesium and calcium ions on sludge bulking in a phosphorus deficient medium, 3 different magnesium and calcium concentrations (5, 10, 20 meq l~(-1)) were studied. Laboratory scale reactors were fed with synthetic wastewater and operated at a sludge age of 8 days. Results showed that, phosphorus deficiency caused sludge bulking. Sludge samples examined under microscope showed that the floc structures from reactors fed with different cations are significantly different. To identify the differences, a series of chemical analyses were conducted on the sludge samples. In addition to that, sludge volume index (SVI) values were monitored on a daily basis. Next, the concentration of phosphorus in the feed medium was increased in two separate steps and the possibility to cure the sludge bulking problem was investigated. It was found that bulking of activated sludges due to phosphorus deficiency could be cured by the addition of phosphorus. For phosphorus deficient bulking in relation to the cations present in the system some mechanisms are suggested.
机译:沉淀分离是活性污泥工艺中最麻烦的阶段之一。从处理后的废水中分离微生物生物质的效率降低导致处理厂的整体效率降低。活性污泥系统中对沉降性产生负面影响的最常见问题之一是污泥膨胀,这可以定义为微生物团块的非沉降状态。这项研究的主要目的是找出磷缺乏对活性污泥膨胀的影响。为了实现这一目标,通过运行6个半连续活性污泥反应器,研究了严格的磷受限环境的影响。由于本研究的特定目的是确定镁和钙离子对缺磷培养基中污泥膨胀的影响,因此研究了3种不同的镁和钙浓度(5、10、20 meq l〜(-1))。向实验室规模的反应器中注入合成废水,并在8天的污泥龄下运行。结果表明,磷缺乏导致污泥膨胀。在显微镜下检查的污泥样品显示,来自不同阳离子进料的反应器的絮凝结构显着不同。为了确定差异,对污泥样品进行了一系列化学分析。除此之外,还每天监测污泥体积指数(SVI)值。接下来,分两个步骤增加进料介质中的磷浓度,并研究了解决污泥膨胀问题的可能性。已经发现,由于磷缺乏而引起的活性污泥的膨胀可以通过添加磷来治愈。对于与系统中存在的阳离子有关的磷缺乏填充,提出了一些机理。

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