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An integrated wastewater treatment system using a BAS reactor with biomass attached to tubular supports

机译:使用BAS反应器的生物废水处理系统,其生物质附着在管状支撑物上

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This paper describes laboratory experiments aimed to develop a new wastewater treatment system as an alternative to a conventional domestic wastewater plant. A modified Biofilm Airlift Suspension reactor (BAS), with biomass attached to tubular supports, is proposed to address low organic loads (typical of domestic sewage) and low residence time (typical of compact reactors technology). Attached and suspended biomasses, coupled to the high dissolved oxygen (DO), allow high removal efficiencies (90% and 56% for COD and N-NHj removal respectively) and high effluent quality to be reached. The experimental activity, divided into three parts, demonstrates the good efficiency of the process, and the reduction of the removal kinetics for the high operating pressure used in the technology. The occurrence of simultaneous nitrification-denitrification (SND) was also observed. When compared with the conventional BAS system, the present treatment shows comparable removal efficiencies and higher specific removal rates (80 mg COD/g VSS and 2.60 mg N-NH_4~+/g VSS). The experimental results were coupled with the development of a numerical model to aid in designing a full-scale treatment plant in Italy.
机译:本文介绍了旨在开发一种新型废水处理系统以替代常规生活污水处理厂的实验室实验。有人提出了一种改进的生物膜气举悬浮反应器(BAS),将生物质附着在管状支撑物上,以解决低有机负荷(典型的生活污水)和低停留时间(典型的紧凑型反应堆技术)的问题。附着和悬浮的生物量,再加上高溶解氧(DO),可以实现高去除效率(去除COD和N-NHj分别达到90%和56%)和高废水质量。实验活动分为三个部分,展示了该方法的良好效率,以及该技术中使用的高工作压力下去除动力学的降低。还观察到同时硝化-反硝化(SND)的发生。当与常规BAS系统相比时,本处理显示出相当的去除效率和更高的比去除率(80 mg COD / g VSS和2.60 mg N-NH_4〜+ / g VSS)。实验结果与数值模型的开发相结合,以帮助在意大利设计一个大型的污水处理厂。

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