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Combined wastewater feed directly into final clarification - Advantage for receiving rivers

机译:将合并的废水直接进料到最终澄清中-接收河流的优势

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With a view to a reduction of the discharge from combined water outflow, the increase of the influent to a wastewater treatment plant can be an efficient solution, for cases in which the discharge concentration of the wastewater treatment plant would not deteriorate significantly as a result. Through bypassing the aeration with combined water and a direct feed of the combined water into the final clarification (Mina-Process) the specific sludge volume loading, which is significant to the efficiency of the final clarification, will not be raised. But the adsorption capability of the aerated sludge, the sedimentation effect of the final clarification, and the partial recirculation over return-sludge can be used for an elimination of suspended solids, chemical oxygen demand (COD), ammonia and phosphate from the combined wastewater. In large-scale tests in Wilhelmshaven (160,000 PE), removal efficiencies for the elimination in the bypass of 75% of COD, 60% of ammonia and 89% of suspended solids were reached. In comparison with conventional procedures for combined water treatment (e.g. storage volumes, soil filter) the Mina-Process has the possibility to achieve a highly efficient and economical combined water treatment by using the capability of existing clarifiers.
机译:为了减少来自合并的水流出的排放,对于废水处理厂的排放浓度不会因此而显着恶化的情况,增加废水处理厂的进水量可以是一种有效的解决方案。通过将混合水绕过曝气,并将混合水直接进料到最终澄清池(Mina-Process),不会提高对最终澄清池的效率至关重要的特定污泥体积。但是,曝气污泥的吸附能力,最终澄清的沉降效果以及回流污泥的部分再循环可用于消除混合废水中的悬浮固体,化学需氧量(COD),氨和磷酸盐。在威廉港(160,000 PE)的大规模测试中,达到了在旁路中消除75%的COD,60%的氨和89%的悬浮固体的去除效率。与常规的联合水处理程序(例如,存储量,土壤滤池)相比,Mina-Process可以通过使用现有澄清池的功能来实现高效,经济的联合水处理。

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