Evaluation of the resilience of a full-scale down-flow hanging sponge reactor to long-term outages at a sewage treatment plant in India

J Environ Manage. 2016 Oct 1:181:832-837. doi: 10.1016/j.jenvman.2016.06.058. Epub 2016 Jul 21.

Abstract

Resilience to process outages is an essential requirement for sustainable wastewater treatment systems in developing countries. In this study, we evaluated the ability of a full-scale down-flow hanging sponge (DHS) reactor to recover after a 10-day outage. The DHS tested in this study uses polyurethane sponge as packing material. This full-scale DHS reactor has been tested over a period of about 4 years in India with a flow rate of 500 m(3)/day. Water was not supplied to the DHS reactor that was subjected to the 10-day outage; however, the biomass did not dry out because the sponge was able to retain enough water. Soon after the reactor was restarted, a small quantity of biomass, amounting to only 0.1% of the total retained biomass, was eluted. The DHS effluent achieved satisfactory removal of suspended solids, chemical oxygen demand, and ammonium nitrogen within 90, 45, and 90 min, respectively. Conversely, fecal coliforms in the DHS effluent did not reach satisfactory levels within 540 min; instead, the normal levels of fecal coliforms were achieved within 3 days. Overall, the tests demonstrated that the DHS reactor was sufficiently robust to withstand long-term outages and achieved steady state soon after restart. This reinforces the suitability of this technology for developing countries.

Keywords: Developing countries; Down-flow hanging sponge (DHS); Process outage; Starvation conditions; Sustainable wastewater treatment.

MeSH terms

  • Ammonia / metabolism
  • Animals
  • Biological Oxygen Demand Analysis
  • Biomass
  • Bioreactors* / microbiology
  • Equipment Design
  • Feces / microbiology
  • India
  • Nitrogen / analysis
  • Nitrogen / metabolism
  • Polyurethanes
  • Sewage / microbiology
  • Waste Disposal, Fluid / instrumentation*
  • Waste Disposal, Fluid / methods
  • Wastewater

Substances

  • Polyurethanes
  • Sewage
  • Waste Water
  • Ammonia
  • Nitrogen