Effect of sulfide removal on sulfate reduction at pH 5 in a hydrogen fed gas-lift bioreactor

J Microbiol Biotechnol. 2008 Nov;18(11):1809-18. doi: 10.4014/jmb.0800.109.

Abstract

Biotechnological treatment of sulfate- and metal-ionscontaining acidic wastewaters from mining and metallurgical activities utilizes sulfate-reducing bacteria to produce sulfide that can subsequently precipitate metal ions. Reducing sulfate at a low pH has several advantages above neutrophilic sulfate reduction. This study describes the effect of sulfide removal on the reactor performance and microbial community in a high-rate sulfidogenic gas-lift bioreactor fed with hydrogen at a controlled internal pH of 5. Under sulfide removal conditions, 99% of the sulfate was converted at a hydraulic retention time of 24 h, reaching a volumetric activity as high as 51 mmol sulfate/l/d. Under nonsulfide removal conditions, <25% of the sulfate was converted at a hydraulic retention time of 24 h reaching volumetric activities of <13mmol sulfate/l/d. The absence of sulfide removal at a hydraulic retention time of 24 h resulted in an average H2S concentration of 18.2 mM (584 mg S/l). The incomplete sulfate removal was probably due to sulfide inhibition. Molecular phylogenetic analysis identified 11 separate 16S rRNA bands under sulfide stripping conditions, whereas under nonsulfide removal conditions only 4 separate 16S rRNA bands were found. This shows that a less diverse population was found in the presence of a high sulfide concentration.

Publication types

  • Evaluation Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Archaea* / classification
  • Archaea* / genetics
  • Archaea* / growth & development
  • Archaea* / metabolism
  • Bacteria* / classification
  • Bacteria* / genetics
  • Bacteria* / growth & development
  • Bacteria* / metabolism
  • Biodegradation, Environmental
  • Bioreactors / microbiology*
  • Ecosystem
  • Hydrogen / metabolism*
  • Hydrogen / pharmacology
  • Hydrogen-Ion Concentration
  • Industrial Waste
  • Oxidation-Reduction
  • Phylogeny
  • RNA, Ribosomal, 16S / genetics
  • Sequence Analysis, DNA
  • Sulfates / metabolism*
  • Sulfides / metabolism*
  • Waste Disposal, Fluid

Substances

  • Industrial Waste
  • RNA, Ribosomal, 16S
  • Sulfates
  • Sulfides
  • Hydrogen