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Effect of COD/N Ratio on Removal Performances in Two Subsurface Wastewater Infiltration Systems
Fei et al.
Dissolved oxygen (DO), were investigated. Aerobic conditions were effectively developed in 50 cm depth of the matrix and anoxic or anaerobic conditions were not changed in 80 and 110 cm depth by intermittent aeration, which encouraged nitrification. Increased influent COD/N ratio led to lower COD and nitrogen removal in conventional SWISs. Sufficient carbon source in high COD/N ratio influent promoted denitrification with intermittent aeration. High removal rates of COD (95.68 ± 0.21%), TP (92.02 ± 0.28%), ‐N (99.33 ± 0.05%), and ‐ (89.65 ± 0.6%) were obtained with influent COD/N ratio of 12 in aerated SWISs. Under the COD/N ratio of 12 and 18, intermittent aeration boosted the growth and reproduction of nitrifying bacteria and denitrifying bacteria. Meanwhile, nitrate and nitrite reductase activities with intermittent aeration were higher than that without aeration in 80 and 110 cm depths.
Effect of COD/N Ratio on Removal Performances in Two Subsurface Wastewater Infiltration Systems
Fei et al.
Dissolved oxygen (DO), were investigated. Aerobic conditions were effectively developed in 50 cm depth of the matrix and anoxic or anaerobic conditions were not changed in 80 and 110 cm depth by intermittent aeration, which encouraged nitrification. Increased influent COD/N ratio led to lower COD and nitrogen removal in conventional SWISs. Sufficient carbon source in high COD/N ratio influent promoted denitrification with intermittent aeration. High removal rates of COD (95.68 ± 0.21%), TP (92.02 ± 0.28%), ‐N (99.33 ± 0.05%), and ‐ (89.65 ± 0.6%) were obtained with influent COD/N ratio of 12 in aerated SWISs. Under the COD/N ratio of 12 and 18, intermittent aeration boosted the growth and reproduction of nitrifying bacteria and denitrifying bacteria. Meanwhile, nitrate and nitrite reductase activities with intermittent aeration were higher than that without aeration in 80 and 110 cm depths.
Effect of COD/N Ratio on Removal Performances in Two Subsurface Wastewater Infiltration Systems
Fei et al.
Fei, Hexin (Autor:in) / Pan, Jing (Autor:in) / Tong, Deli (Autor:in) / Huang, Linli (Autor:in) / Yu, Long (Autor:in) / Sun, Yafei (Autor:in) / Qi, Shiyue (Autor:in) / Huang, Yaoyao (Autor:in)
Water Environment Research ; 89 ; 694-702
01.08.2017
9 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Oxygen Consumption in Two Subsurface Wastewater Infiltration Systems under Continuous Operation Mode
DOAJ | 2020
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