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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Performance of the anammox process treating low-strength municipal wastewater under low temperatures: Effect of undulating seasonal temperature variation
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Performance of the anammox process treating low-strength municipal wastewater under low temperatures: Effect of undulating seasonal temperature variation

机译:低温下低强度城市废水的厌氧过程的性能:波动季节温度变化的影响

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摘要

In the anammox process treating low-strength municipal wastewater, the effect of common seasonal temperature variation (15.1 degrees C-22.2 degrees C) on performance was studied. In autumn and winter, the nitrogen removal rate (NRR) decrement of 0.038kgN/(m(3).d) (17.9 degrees C -> 15.1 degrees C) was nearly threefold higher than 0.014kgN/(m(3).d) (22.2 degrees C -> 17.9 degrees C), which showed that lower temperature laid more negative impact on nitrogen removal. N-15 isotope tracing tests confirmed that the contribution of denitrification to nitrogen removal was far less than anammox, and anammox contributed more at 15.1 degrees C (91.7%) than 21.9 degrees C (78.9%). Anammox bacteria could adapt to lower temperature after short-term acclimatization, especially the dominant genus Ca. Brocadia increased from 1.8% to 2.5% and its abundance was significantly correlated with nitrogen consumption (p < 0.05). Above findings suggest that the adaptability of Ca. Brocadia could provide the possibility to maintain nitrogen removal performance at lower temperature. In spring, the improved maximum anammox activity from 2.85 to 3.23mgNH(4)(+)-N/(gVSS.h) indicated the recovered removal capacity.
机译:在处理低强度城市废水的厌氧过程中,研究了常见的季节性温度变化(15.1摄氏度C-22.2摄氏度)的性能。在秋季和冬季,氮去除率(NRR)递减为0.038kgn /(m(3).d)(17.9℃ - > 15.1℃)几乎高于0.014kgn /(m(3).d )(22.2℃ - > 17.9℃),显示较低的温度对氮气除去的影响更多。 N-15同位素跟踪试验证实,脱氮对氮去除的贡献远小于厌氧毒素,厌氧毒素在15.1℃(91.7%)比21.9℃(78.9%)上贡献更多。厌氧菌细菌可以在短期适应后,尤其是占CA的显性基因较低的温度。 Brocadia从1.8%增加到2.5%,其丰度与氮气消耗显着相关(P <0.05)。上面的研究结果表明加利福尼亚州的适应性。 Brocadia可以提供在较低温度下保持氮气去除性能的可能性。在弹簧中,从2.85到3.23mgnH(4)(+) - n /(gvss.h)的改善的最大厌氧毒性活性表明回收的去除能力。

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