4.7 Article

Analysis of factors affecting the performance of partial nitrification in a sequencing batch reactor

期刊

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
卷 98, 期 4, 页码 1863-1870

出版社

SPRINGER
DOI: 10.1007/s00253-013-5135-z

关键词

Partial nitrification; Sequencing batch reactor (SBR); Chemical oxygen demand/nitrogen ratio; Settling time

资金

  1. Independent Innovation Foundation of Shandong University [2012JC029]
  2. Natural Science Foundation for Distinguished Young Scholars of Shandong province [JQ201216]
  3. National Water Special Project [2012ZX0 7203-004]
  4. National Natural Science Foundation of China [50908133]
  5. Natural Science Foundation of Shandong Province [ZR2010 EM063]
  6. Special Research and Development Environmental Protection Industry of Shandong Province [THB1002]

向作者/读者索取更多资源

The objective of this study was to analyze the factors affecting the performance of partial nitrification in a sequencing batch reactor. During a 140-day long-term operation, influent pH value, dissolved oxygen (DO), and chemical oxygen demand/nitrogen (COD/N) ratio were selected as operating factors to evaluate the maintenance and recovery of nitrite accumulation. Results showed that high DO concentration (2-4 mg/L) could damage nitrite accumulation immediately. However, nitrite accumulation ratio (NAR) could be increased from 1.68 +/- 1.51 to 35.46 +/- 7.86 % when increasing the pH values from 7.5 to 8.3 due to the increased free ammonia concentration. Afterwards, stable partial nitrification and high NAR could be recovered when the reactor operated under low DO concentration (0.5-1.0 mg/L). However, it required a long time to recover the partial nitrification of the reactor when the influent COD/N ratios were altered. Fluorescence in situ hybridization analysis implied that ammonium oxidizing bacteria were completely recovered to the dominant nitrifying bacteria in the system. Meanwhile, sludge volumetric index of the reactor gradually decreased from 115.6 to 56.6 mL/g, while the mean diameter of sludge improved from 74.57 to 428.8 mu m by using the strategy of reducing settling time. The obtained results could provide useful information between the operational conditions and the performance of partial nitrification when treating nitrogen-rich industrial wastewater.

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