AI Article Synopsis

  • Wastewater treatment plants in South Korea struggle with low total phosphorus (TP) removal efficiency during summer due to high temperatures and fluctuating inflow from rainfall.
  • The study aims to improve TP removal by injecting fixed external carbon sources, specifically acetate and propionate, to enhance the dominance of polyphosphate accumulating organisms (PAOs) over glycogen accumulating organisms (GAOs).
  • Results showed that adding these external sources increased TP removal efficiency and maintained stability under temperature variations, with the optimal carbon source ratio identified as 2:1 acetate to propionate.

Article Abstract

In summer, wastewater treatment plant total phosphorus (TP) removal efficiency is low in South Korea. The reason is because of high temperatures or significant fluctuation of inflow characteristics caused by frequent rainfall. Hence, this study tried to raise TP removal efficiency by injecting fixed external carbon sources in real sewage. Polyphosphate accumulating organisms (PAOs) and glycogen accumulating organisms (GAOs) compete to occupy microorganisms at high temperature. Propionate is known to restrain GAOs. Thus, acetate and propionate were chosen as the external carbon source in this study to find out the suitable volume and ratio of carbon source which ensured the dominance of PAOs. An external carbon source was supplied in the anaerobic reactor of the biological phosphorus removal process at high temperature (above 25 °C). TP removal efficiency was improved by injecting an external carbon source compared to that without an external carbon source. Also, it remained relatively stable when injecting an external carbon source, despite the variation in temperature. TP removal efficiency was the highest when injecting acetate and propionate in the proportion of 2:1 (total concentration as chemical oxygen demand (COD) is 12 mg/L in influent).

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Source
http://dx.doi.org/10.2166/wst.2014.090DOI Listing

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