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Biofiltration of WWTP sludge composting emissions at contact times of 2–10 s by structured/unstructured packing materials

机译:通过结构化/非结构化包装材料在2-10秒的接触时间内对污水处理厂污泥进行生物过滤

摘要

The performance of a biotrickling filter for the abatement of composting emissions was evaluated at short gas contact times of 2–10 s with a structured and an unstructured packing material. The effect of the gas contact time, pH control and water make-up flowrate were also evaluated during 8 months.udThe average elimination capacity was 13 g N m-3 h-1 and 3.3 g C m-3 h-1 for NH3 and VOCs, respectively.udMaximum capacities obtained during an inlet concentration spiking experiment were 45 g N m-3 h-1 and 20 g C m-3 h-1 at a removal efficiency of 92.5 and 46.7%, respectively. A decrease of 40% was detected in the nitrification capacity when the hydraulic residence time increased from 2 to 5 h. Thus, water renewal was identified as a critical parameter to avoid substrate inhibition by nitrite and NH3 accumulation.udResults demonstrate that significant NH3 and VOCs removal efficiencies can be achieved for composting emissions in a biotrickling filter operated at short gas contact times, which entails a substantial reduction of operational and investment costs in comparison to traditional techniques.
机译:在2 – 10 s的短气体接触时间下,使用结构化和非结构化填充材料评估了生物滴滤器减少堆肥排放的性能。在8个月内还评估了气体接触时间,pH控制和补水流量的影响。 ud对NH3的平均消除能力为13 g N m-3 h-1和3.3 g C m-3 h-1 ud入口浓度峰值实验期间获得的最大容量分别为45 g N m-3 h-1和20 g C m-3 h-1,去除效率分别为92.5和46.7%。当水力停留时间从2小时增加到5小时时,硝化能力下降了40%。因此,水更新被确定为避免底物被亚硝酸盐和NH3积累抑制的关键参数。 ud结果表明,在短时间接触气体的生物滴滤池中,堆肥排放可实现显着的NH3和VOC去除效率。与传统技术相比,大大降低了运营和投资成本。

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