Sustainable operation of submerged Anammox membrane bioreactor with recycling biogas sparging for alleviating membrane fouling

Chemosphere. 2015 Dec:140:106-13. doi: 10.1016/j.chemosphere.2014.08.059. Epub 2014 Oct 11.

Abstract

A submerged anaerobic ammonium oxidizing (Anammox) membrane bioreactor with recycling biogas sparging for alleviating membrane fouling has been successfully operated for 100d. Based on the batch tests, a recycling biogas sparging rate at 0.2m(3)h(-1) was fixed as an ultimate value for the sustainable operation. The mixed liquor volatile suspended solid (VSS) of the inoculum for the long operation was around 3000mgL(-1). With recycling biogas sparging rate increasing stepwise from 0 to 0.2m(3)h(-1), the reactor reached an influent total nitrogen (TN) up to 1.7gL(-1), a stable TN removal efficiency of 83% and a maximum specific Anammox activity (SAA) of 0.56kg TNkg(-1) VSSd(-1). With recycling biogas sparging rate at 0.2 m(3) h(-1) (corresponding to an aeration intensity of 118m(3)m(-2)h(-1)), the membrane operation circle could prolong by around 20 times compared to that without gas sparging. Furthermore, mechanism of membrane fouling was proposed. And with recycling biogas sparging, the VSS and EPS content increasing rate in cake layer were far less than the ones without biogas sparging. The TN removal performance and sustainable membrane operation of this system showed the appealing potential of the submerged Anammox MBR with recycling biogas sparging in treating high-strength nitrogen-containing wastewaters.

Keywords: Anammox; Membrane fouling; Recycling biogas sparing; SAnMBR.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Ammonium Compounds / analysis
  • Ammonium Compounds / metabolism*
  • Anaerobiosis
  • Biofuels
  • Bioreactors*
  • Membranes, Artificial
  • Nitrogen
  • Recycling
  • Waste Disposal, Fluid / instrumentation*
  • Waste Disposal, Fluid / methods
  • Wastewater / chemistry*
  • Wastewater / microbiology
  • Water Pollutants, Chemical / analysis
  • Water Pollutants, Chemical / metabolism*

Substances

  • Ammonium Compounds
  • Biofuels
  • Membranes, Artificial
  • Waste Water
  • Water Pollutants, Chemical
  • Nitrogen