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Enhancing filterability of activated sludge from landfill leachate treatment plant by applying electrical field ineffective on bacterial life

机译:通过对细菌寿命的应用无效施加电场来提高垃圾渗滤液处理厂的活性污泥的过滤性

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摘要

The aim of this study is to investigate filterability enhancement of activated sludge supplied form a full-scale leachate treatment plant by applying DC electric field while keeping the biological operational conditions in desirable range. The activated sludge samples were received from the nitrification tank in the leachate treatment plant of Istanbul's Odayeri Sanitary Landfill Site. Experimental sets were conducted as laboratory-scale batch studies and were duplicated for 1A, 2A, 3A, 4A, and 5A of electrical currents and 2, 5, 10, 15, and 30 min of exposure times under continuous aeration. Physicochemical parameters such as temperature, pH, and oxidation reduction potential in the mixture right after each experimental set and biochemical parameters such as chemical oxygen demand, total phosphorus, and ammonia nitrogen in supernatant were analyzed to define the sets that remain in the range of ideal biological operational conditions. Later on, sludge filterability properties such as capillary suction time, specific resistance to filtration, zeta potential, and particle size were measured for remaining harmless sets. Additionally, cost analyses were conducted in respect to energy and electrode consumptions. Application of 2A DC electric field and 15min exposure time was found to be the most favorable conditions to enhance filterability of the landfill leachate-activated sludge.
机译:本研究的目的是研究通过施加直流电场,在保持生物运行条件下,通过施加直流电场来进行全级渗滤液处理设备的活性污泥的过滤性增强。从伊斯坦布尔的卫生卫生垃圾填埋场浸出液处理厂的硝化罐中接收活性污泥样品。实验组作为实验室标度批量研究进行,并且在连续通气下将电流和2,5,10,15和30分钟复制1A,2A,3A,4A和5A,其暴露时间。在每种实验组和生化参数如化学需氧量,总磷和氨氮之后的混合物中诸如温度,pH和氧化降低电位的物理化学参数被分析以定义留在理想范围内的套件生物运行条件。以后,测量污泥过滤性,如毛细管吸入时间,对过滤的特异性抗性,Zeta电位和粒度,以剩余无害的组。另外,对能量和电极消耗进行成本分析。 2A DC电场和15min暴露时间的应用是增强垃圾渗滤液活化污泥的过滤性最有利的条件。

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