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Hydrogenotrophic denitrification for tertiary nitrogen removal from municipal wastewater using membrane diffusion packed-bed bioreactor

机译:使用膜扩散填充床生物反应器的氢营养法脱氮以去除城市废水中的三氮

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摘要

A lab-scale membrane diffusion packed-bed bioreactor was used to investigate hydrogenotrophic denitrification for tertiary nitrogen removal from municipal wastewater. After start-up, the bioreactor had been operated for 165days by stepwise increasing influent loading rates at 30 and 15°C. The results indicated that this bioreactor could achieve relatively high nitrogen removal efficiencies. The denitrification rates reached 0.250 and 0.230kgN/(m~3d) at 30 and 15°C respectively. The total nitrogen concentration in effluent was entirely below 2.0mg/L at the steady operation state. The average increase of total organic carbon in effluent was approximately 0.41mg/L, suggesting the risk of organic residue can be completely controlled. Dissolved oxygen (DO) did not show obviously negative effects on hydrogenotrophic denitrification. There was only slight decrease of DO concentration in effluent, which demonstrated almost all of the hydrogen was used for nitrate reduction.
机译:实验室规模的膜扩散填充床生物反应器用于研究氢营养反硝化以去除城市废水中的三次氮。启动后,通过逐步提高进水速率(30和15°C),生物反应器已运行165天。结果表明该生物反应器可以达到较高的脱氮效率。在30°C和15°C下,反硝化率分别达到0.250和0.230kgN /(m〜3d)。在稳定运行状态下,废水中的总氮浓度完全低于2.0mg / L。废水中总有机碳的平均增加量约为0.41mg / L,表明可以完全控制有机残留物的风险。溶解氧(DO)对氢营养反硝化作用没有明显的负面影响。废水中溶解氧的浓度仅略有下降,这表明几乎所有的氢气都用于还原硝酸盐。

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