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- W2000749418 abstract "Even though many studies have focused on identifying the effects of NH-N on various aspects of wetland systems, there have been very few attempts to quantify the overall impact of NH-N concentration on NO-N removal efficiency. Consequently, this research was conducted to investigate the effects of influent NH-N (2–10 mgl−1) and NO-N (2–6 mgl−1) concentrations on NO-N removal efficiency and growth inhibition concentrations of Egeria densa Planch. Mass balance for NH-N removal was done to quantify the nitrified NH-N in order to incorporate total NO-N concentration for the non-linear regression analysis. The NO-N and total nitrogen removal efficiencies were significantly varied at three different NO-N concentrations (p<0.05). Data on oxygen consumption during dark respiration (0.25–0.48 mgl−1 hr−1 g−1 of dry weight biomass) and final biomass (0.17–0.24 g) variations revealed that the lowest growth inhibition concentration of NH-N on E. densa could be 4 mgl−1. Non-linear regression analysis established a positive correlation (r2=0.97) between influent NH-N concentration and NO-N removal efficiency within the analysed range of NH-N (0–4 mgl−1). Results suggest that NO-N removal efficiency in submerged plant wetland systems could be improved by adding sufficient amounts of NH-N to secondary treated wastewater." @default.
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- W2000749418 date "2009-06-01" @default.
- W2000749418 modified "2023-10-18" @default.
- W2000749418 title "Impact of influent inorganic nitrogen on nitrate removal efficiency of submerged plant microcosms" @default.
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- W2000749418 doi "https://doi.org/10.1080/02757540902922703" @default.
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