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Solved upscaling problems for implementing deammonification of rejection water

机译:解决了将废水脱氨的升级问题

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So far, extremely efficient metabolic pathways for nitrogen removal exclusively by autotrophic organisms are well established in scientific literature but not in practice. This paper presents results from the successful implementation of rejection water deammonification in a full-scale single sludge system at the WWTP Strass, Austria. Anaerobic ammonia oxidising biomass has been accumulated during a 2.5 year start-up period when the reactor size was gradually scaled up in the steps. The pH-controlled deammonification system (DEMON) has reached a design capacity of eliminating approximately 300 kg of nitrogen per day. Energy savings outperform expectations, decreasing the mean specific demand for compressed air from 109 m(3)(kg N)(-1) to 29 m(3)(kg N)(-1). Dominance of autotrophic metabolism is confirmed by organic effluent loads topping influent loads.
机译:迄今为止,仅通过自养生物去除氮的极其有效的代谢途径已在科学文献中建立,但在实践中尚未建立。本文介绍了在奥地利污水处理厂Strass的全面单污泥系统中成功实施排污水脱氨的结果。当反应器的规模逐步扩大时,厌氧氨氧化生物质已在2.5年的启动期中积累。 pH控制的脱氨系统(DEMON)已达到每天消除约300千克氮的设计能力。节能效果超出了预期,将压缩空气的平均比需求从109 m(3)(kg N)(-1)降低到29 m(3)(kg N)(-1)。自养代谢的优势被有机废水负荷超过了废水负荷所证实。

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