Published 2015
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Effects of Chemical Oxygen Demand, Nutrients and Salinity on Sulfate-Reducing Bacteria

  • 1. Water Systems and Technology, KWR Watercycle Research Institute, Nieuwegein, The Netherlands.
  • 2. Hong Kong University of Science and Technology
  • 3. UNESCO-IHE Institute for Water Education
  • 4. Delft University of Technology

Description

Abstract As a result of seawater intrusion in sewer systems or due to seawater toilet flushing, domestic wastewater may contain significant amounts of sulfate, which might lead to sulfate reducing bacteria (SRB) activity. Because of the low biomass sludge-yield of SRB, application of SRB is beneficial for reduction of sludge treatment costs. Moreover, the produced sulfide helps to remove heavy metals from treated water. In this study, short-term (6 h) effect on sulfate reduction rate of chemical oxygen demand (COD), N, P, SO42−, and salinity variations, far beyond (10-fold) the regular concentrations in municipal wastewater, was investigated. Increased propionate levels (>1,000 mg COD/L) have shown to reduce sulfate reduction rate, while acetate up to 4,000 mg COD/L did not. Nitrate became inhibitory at levels higher than 500 mg N/L, due to formation of nitrite (<10 mg N/L). Higher concentrations of ammonium and phosphate did not lead to a change in the sulfate reduction rate. Increased salinity decreased...
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