Process integration for biological sulfate reduction in a carbon monoxide fed packed bed reactor

J Environ Manage. 2018 Aug 1:219:294-303. doi: 10.1016/j.jenvman.2018.04.033. Epub 2018 May 9.

Abstract

This study examined immobilized anaerobic biomass for sulfate reduction using carbon monoxide (CO) as the sole carbon source under batch and continuous fed conditions. The immobilized bacteria with beads made of 10% polyvinyl alcohol (PVA) showed best results in terms of sulfate reduction (84 ± 3.52%) and CO utilization (98 ± 1.67%). The effect of hydraulic retention time (HRT), sulfate loading rate and CO loading rate on sulfate and CO removal was investigated employing a 1L packed bed bioreactor containing the immobilized biomass. At 48, 24 and 12 h HRT, the sulfate removal was 94.42 ± 0.15%, 89.75 ± 0.47% and 61.08 ± 0.34%, respectively, along with a CO utilization of more than 90%. The analysis of variance (ANOVA) of the results obtained showed that only the initial CO concentration significantly affected the sulfate reduction process. The reactor effluent sulfate concentrations were 27.41 ± 0.44, 59.16 ± 1.08, 315.83 ± 7.33 mg/L for 250, 500 and 1000 mg/L of influent sulfate concentrations respectively, under the optimum operating conditions. The sulfate reduction rates matched well with low inlet sulfate loading rates, indicating stable performance of the bioreactor system. Overall, this study yielded very high sulfate reduction efficiency by the immobilized anaerobic biomass under high CO loading condition using the packed bed reactor system.

Keywords: Carbon monoxide conversion; Immobilized anaerobic biomass; Packed bed bioreactor; Polyvinyl alcohol; Sulfate reduction.

MeSH terms

  • Biomass
  • Bioreactors*
  • Carbon Monoxide*
  • Oxidation-Reduction
  • Sulfates*
  • Waste Disposal, Fluid

Substances

  • Sulfates
  • Carbon Monoxide