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Ammonium removal using algae-bacteria consortia: the effect of ammonium concentration, algae biomass, and light

机译:使用藻类细菌除去铵:铵浓度,藻类生物量和光的作用

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摘要

In this study, the effects of ammonium nitrogen concentration, algae biomass concentration, and light conditions (wavelength and intensity) on the ammonium removal efficiency of algae-bacteria consortia from wastewater were investigated. The results indicated that ammonium concentration and light intensity had a significant impact on nitrification. It was found that the highest ammonia concentration (430 mg N/L) in the influent resulted in the highest ammonia removal rate of 108 +/- 3.6 mg N/L/days, which was two times higher than the influent with low ammonia concentration (40 mg N/L). At the lowest light intensity of 1000 Lux, algae biomass concentration, light wavelength, and light cycle did not show a significant effect on the performance of algal-bacterial consortium. Furthermore, the ammonia removal rate was approximately 83 +/- 1.0 mg N/L/days, which was up to 40% faster than at the light intensity of 2500 Lux. It was concluded that the algae-bacteria consortia can effectively remove nitrogen from wastewater and the removal performance can be stabilized and enhanced using the low light intensity of 1000 Lux that is also a cost-effective strategy.
机译:在该研究中,研究了氮浓度,藻类生物质浓度和光条件(波长和强度)对废水中藻类组成的铵去除效率的影响。结果表明,铵浓度和光强度对硝化具有显着影响。发现流入中的最高氨浓度(430mg n / L)导致最高的氨去除率为108 +/- 3.6mg n / l /天,比低氨浓度的流入量高两倍(40 mg n / l)。在1000勒克斯的最低光强度下,藻类生物量浓度,光波长和光循环对藻类聚集物的性能没有显示出显着影响。此外,氨除去速率约为83 +/- 1.0mg N / L /天,其比在2500勒克斯的光强度快40%。得出结论是,藻类细菌可有效除去废水中的氮,可以使用1000勒克斯的低光强度稳定和增强,这也是一种成本效益的策略。

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