Coupling between anammox and autotrophic denitrification for simultaneous removal of ammonium and sulfide by enriched marine sediments

Biodegradation. 2016 Jun;27(2-3):107-18. doi: 10.1007/s10532-016-9759-4. Epub 2016 Mar 19.

Abstract

In the present study, the capacity of enrichments derived from marine sediments collected from different sites of the Mexican littoral to perform anaerobic ammonium oxidation (anammox) coupled to sulfide-dependent denitrification for simultaneous removal of ammonium and sulfide linked to nitrite reduction was evaluated. Sulfide-dependent denitrification out-competed anammox during the simultaneous oxidation of sulfide and ammonium. Significant accumulation of elemental sulfur (ca. 14-30 % of added sulfide) occurred during the coupling between the two respiratory processes, while ammonium was partly oxidized (31-47 %) due to nitrite limitation imposed in sediment incubations. Nevertheless, mass balances revealed up to 38 % more oxidation of the electron donors available (ammonium and sulfide) than that expected from stoichiometry. Recycling of nitrite, from nitrate produced through anammox, is proposed to contribute to extra oxidation of sulfide, while additional ammonium oxidation is suggested by sulfate-reducing anammox (SR-anammox). The complex interaction between nitrogenous and sulfurous compounds occurring through the concomitant presence of autotrophic denitrification, conventional anammox and SR-anammox may significantly drive the nitrogen and sulfur fluxes in marine environments.

Keywords: Aquaculture effluents; Marine environment; Nitrogen cycle; Sulfur cycle.

MeSH terms

  • Ammonium Compounds / isolation & purification
  • Ammonium Compounds / metabolism*
  • Anaerobiosis
  • Autotrophic Processes*
  • Biodegradation, Environmental
  • Biomass
  • Denitrification
  • Geologic Sediments / microbiology*
  • Oxidation-Reduction
  • Sulfides / isolation & purification
  • Sulfides / metabolism*

Substances

  • Ammonium Compounds
  • Sulfides