Istanbul Medeniyet University, Bioengineering Department, Goztepe, Istanbul, Turkey.
Chemosphere. 2012 Sep;89(2):144-9. doi: 10.1016/j.chemosphere.2012.05.029. Epub 2012 Jun 9.
This study evaluated the elimination of alkalinity need and excess sulfate generation of sulfur-based autotrophic denitrification process by stimulating simultaneous autotrophic and heterotrophic (mixotrophic) denitrification process in a column bioreactor by methanol supplementation. Also, denitrification performances of sulfur-based autotrophic and mixotrophic processes were compared. In autotrophic process, acidity produced by denitrifying sulfur-oxidizing bacteria was neutralized by the external NaHCO(3) supplementation. After stimulating mixotrophic denitrification process, the alkalinity need of the autotrophic process was satisfied by the alkalinity produced by heterotrophic denitrifiers. Decreasing and lastly eliminating the external alkalinity supplementation did not adversely affect the process performance. Complete denitrification of 75 mg L(-1) NO(3)-N under mixotrophic conditions at 4 h hydraulic retention time was achieved without external alkalinity supplementation and with effluent sulfate concentration lower than the drinking water guideline value of 250 mg L(-1). The denitrification rate of mixotrophic process (0.45 g NO(3)-N L(-1) d(-1)) was higher than that of autotrophic one (0.3 g NO(3)-N L(-1) d(-1)). Batch studies showed that the sulfur-based autotrophic nitrate reduction rate increased with increasing initial nitrate concentration and transient accumulation of nitrite was observed.
本研究通过在柱状生物反应器中添加甲醇来刺激同时进行的自养和异养(混合营养)反硝化过程,评估了基于硫的自养反硝化过程中碱度需求的消除和过量硫酸盐的产生。还比较了基于硫的自养和混合营养过程的反硝化性能。在自养过程中,反硝化硫氧化菌产生的酸度通过外部 NaHCO3补充来中和。在刺激混合营养反硝化过程后,由异养脱氮菌产生的碱度满足了自养过程的碱度需求。减少并最终消除外部碱度补充并没有对过程性能产生不利影响。在混合营养条件下,水力停留时间为 4 小时时,可以在没有外部碱度补充的情况下,实现 75mgL-1NO3-N 的完全反硝化,并且出水硫酸盐浓度低于饮用水指导值 250mgL-1。混合营养过程的反硝化速率(0.45gNO3-NL-1d-1)高于自养过程的反硝化速率(0.3gNO3-NL-1d-1)。批处理研究表明,基于硫的自养硝酸盐还原速率随初始硝酸盐浓度的增加而增加,并且观察到亚硝酸盐的短暂积累。