School of Resources & Civil Engineering, Northeastern University, Shenyang 110819, PR China.
School of Resources & Civil Engineering, Northeastern University, Shenyang 110819, PR China.
Water Res. 2018 Sep 1;140:77-89. doi: 10.1016/j.watres.2018.04.036. Epub 2018 Apr 17.
In cold areas, nitrogen removal performance of wastewater treatment plants (WWTP) declines greatly in winter. This paper systematically describes the enhancement effect of a periodic reverse electrocoagulation technology on biological nitrogen removal at low temperatures. The study showed that in the lab-scale systems, the electrocoagulation technology improved the biomass amount, enzyme activity and the amount of nitrogen removal bacteria (Nitrosomonas, Nitrobacter, Paracoccus, Thauera and Enterobacter). This enhanced nitrification and denitrification of activated sludge at low temperatures. In the pilot-scale systems, the electrocoagulation technology increased the relative abundance of cold-adapted microorganisms (Luteimonas and Trueperaceae) at low temperatures. In a full-scale industrial WWTP, comparison of data from winter 2015 and winter 2016 showed that effluent chemical oxygen demand (COD), NH-N, and NO-N reduced by 10.37, 3.84, and 136.43 t, respectively, throughout the winter, after installation of electrocoagulation devices. These results suggest that the electrocoagulation technology is able to improve the performance of activated sludge under low-temperature conditions. This technology provides a new way for upgrading of the performance of WWTPs in cold areas.
在寒冷地区,冬季污水处理厂(WWTP)的氮去除性能会大幅下降。本文系统地描述了周期性反向电凝聚技术对低温下生物脱氮的增强效果。研究表明,在实验室规模的系统中,电凝聚技术提高了生物量、酶活性和脱氮菌(亚硝化单胞菌、硝化杆菌、副球菌、陶厄氏菌和肠杆菌)的数量。这增强了低温下活性污泥的硝化和反硝化作用。在中试规模的系统中,电凝聚技术增加了低温下耐冷微生物(Luteimonas 和 Trueperaceae)的相对丰度。在一个全规模的工业 WWTP 中,对 2015 年冬季和 2016 年冬季的数据进行比较表明,在安装电凝聚装置后,整个冬季的出水中化学需氧量(COD)、NH-N 和 NO-N 分别减少了 10.37、3.84 和 136.43t。这些结果表明,电凝聚技术能够提高低温条件下活性污泥的性能。该技术为寒冷地区 WWTP 性能升级提供了新途径。