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Biological nitrogen removal over nitritation/denitritation using phenol as carbon source

机译:以苯酚为碳源的硝化/反硝化生物脱氮

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A laboratory scale activated sludge sequencing batch reactor was operated in order to obtain total removal of influent ammonia (200; 300 and 500 mg NH3-N.L-1) with sustained nitrite accumulation at the end of the aerobic stages with phenol (1,000 mg C6H5OH.L-1) as the carbon source for denitrifying microorganisms during the anoxic stages. Ammonia removal above 95% and ratios of (NO2--N / (NO2--N + NO3--N)) ranging from 89 to 99% were obtained by controlling the dissolved oxygen concentration (1.0 mg O2.L-1) and the pH value of 8.3 during the aerobic stages. Phenol proved to be an adequate source of carbon for nitrogen removal via nitrite with continuous feeding throughout part of the anoxic stage. Nitrite concentrations greater than 70.0 mg NO2--N.L-1 inhibited the biological denitritation process.
机译:运行实验室规模的活性污泥测序批处理反应器,以完全去除进水氨(200、300和500 mg NH3-NL-1),在好氧阶段结束时,苯酚(1,000 mg C6H5OH)具有持续的亚硝酸盐积累。 L-1)作为缺氧阶段微生物反硝化的碳源。通过控制溶解氧的浓度(1.0 mg O2.L-1)和氨气,氨的去除率达到95%以上,并且(NO2--N /(NO2--N + NO3--N))的比例在89%至99%之间。好氧阶段的pH值为8.3。事实证明,苯酚是通过亚硝酸盐脱氮并在整个缺氧阶段的整个过程中连续供料的充足碳源。亚硝酸盐浓度大于70.0 mg NO2--N.L-1会抑制生物反硝化过程。

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