The impact of biodegradable carbon sources on nutrients removal in post-denitrification biofilm reactors

Sci Total Environ. 2020 Jun 10:720:137377. doi: 10.1016/j.scitotenv.2020.137377. Epub 2020 Feb 19.

Abstract

Wastewater from households wastewater treatment plants (HWWTP) is discharged to the ground or to the surface waters. Special consideration should be given to the improvement of HWWTP effectiveness, particularly in relation to nutrients. The addition of biodegradable carbon sources to biofilm reactor, can enhance microbial activity but may also lead to filling clogging. The study aimed to compare 3 different organic substrates: acetic acid (commonly applied)and two untypical - citric acid and waste beer, under the same operational conditions in a post-denitrification biofilm reactor. The study investigated the impact of a type of organic substrate, low pH and time on: (1) biofilm growth, (2) the characteristics of extracellular polymeric substances (EPS), (3) the kinetics of nutrients removal and (4) reactor clogging. Results were referred to (5) the effectiveness of nutrients removal. The study demonstrated that low pH assured the development of a thinbiofilm. Citric acid ensured the lowest biomass volume, being by 53% lower than in the reactor with acetic acid and by as much as 61% lower than in the reactor with waste beer. The soluble EPS fraction prevailed in the total EPS in all reactors. The content of the tightly bound EPS fraction ranged from 26.93% (citric acid) to 36.32% (waste beer). Investigations showed also a high ratio of exoproteins to polysaccharide in all fractions, which indicated a significant role of proteins in developing a highly-proliferating biofilm. The treated wastewater met requirements of Polish regulations concerning COD and nitrogen concentrations.

Keywords: Biodegradable carbon sources; Denitrification and dephosphatation kinetic; EPS characteristic; Post-denitrification biofilm reactor; Reactor clogging.

MeSH terms

  • Biofilms
  • Bioreactors
  • Carbon
  • Denitrification*
  • Nitrogen
  • Nutrients
  • Waste Disposal, Fluid
  • Wastewater

Substances

  • Waste Water
  • Carbon
  • Nitrogen