Foladori P, Petrini S, Nessenzia M, Andreottola G
Department of Civil, Environmental and Mechanical Engineering, University of Trento, via Mesiano 77, Trento 38123, Italy E-mail:
Water Sci Technol. 2018 Aug;78(1-2):174-182. doi: 10.2166/wst.2018.094.
The optimization of total nitrogen removal from municipal wastewater was investigated in a laboratory-scale photo-sequencing batch reactor (PSBR) operated with a mixed microalgal-bacterial consortium spontaneously acclimatized to real wastewater. No external aeration was provided in the PSBR to reduce energy consumption: oxygen was only supplied by the microalgal photosynthesis. The enhancement of total nitrogen removal was achieved through: (1) feeding of wastewater in the dark phase to provide readily biodegradable COD when oxygen was not produced, promoting denitrification; (2) intermittent use of the mixer to favor simultaneous nitrification-denitrification inside the dense flocs and to achieve 41% energy saving with respect to continuous mixing. Efficient COD removal (86 ± 2%) was observed, obtaining average effluent concentrations of 37 mg/L and 22 mg/L of total COD and soluble COD, respectively. TKN removal was 97 ± 3%, with an average effluent concentration of 0.5 ± 0.7 mg NH -N/L. Assimilation of nitrogen by heterotrophic bacteria accounted only for 20% of TKN removal, whilst the major part of TKN was nitrified. In particular, the nitrification rate was 1.9 mgN L h (specific rate 2.4 mgN gTSS h), measured with dissolved oxygen near zero, when the oxygen demand was higher than the oxygen produced by photosynthesis. Total nitrogen of 6.3 ± 4.4 mgN/L was measured in the effluent after PSBR optimization.
在一个实验室规模的光序批式反应器(PSBR)中,研究了利用自发适应实际废水的混合微藻-细菌联合体对城市污水总氮去除的优化。PSBR中不提供外部曝气以降低能耗:氧气仅由微藻光合作用提供。通过以下方式实现了总氮去除的增强:(1)在黑暗阶段进水,在不产生氧气时提供易于生物降解的化学需氧量(COD),促进反硝化作用;(2)间歇性使用搅拌器,以利于在密集絮体内部同时进行硝化-反硝化作用,并相对于连续搅拌实现41%的节能。观察到高效的COD去除率(86±2%),总COD和可溶性COD的平均出水浓度分别为37mg/L和22mg/L。总凯氏氮(TKN)去除率为97±3%,平均出水浓度为0.5±0.7mg NH₃-N/L。异养细菌对氮的同化仅占TKN去除量的20%,而TKN的主要部分被硝化。特别是,当需氧量高于光合作用产生的氧量时,在溶解氧接近零时测得的硝化速率为1.9mgN/(L·h)(比速率为2.4mgN/(gTSS·h))。PSBR优化后,出水中总氮含量为6.3±4.4mgN/L。