AI Article Synopsis

  • BTEX compounds are toxic hydrocarbons found in groundwater, and bioelectrochemical systems (BES) can enhance their anaerobic degradation.
  • The study assessed BTEX degradation through single chamber BESs at different voltages, finding that 0.8V produced the highest current and removal rates for toluene and xylene.
  • Microbial analysis revealed that specific families, including Desulfobulbaceae and Geobacteraceae, thrived on the anodes, indicating processes like direct electron transfer and sulfur cycling.

Article Abstract

BTEX compounds (Benzene, Toluene, Ethylbenzene and Xylenes) are toxic hydrocarbons that can be found in groundwater due to accidental spills. Bioelectrochemical systems (BES) are an innovative technology to stimulate the anaerobic degradation of hydrocarbons. In this work, single chamber BESs were used to assess the degradation of a BTEX mixture at different applied voltages (0.8V, 1.0V, 1.2V) between the electrodes. Hydrocarbon degradation was linked to current production and to sulfate reduction, at all the tested potentials. The highest current densities (about 200mA/m with a maximum peak at 480mA/m) were observed when 0.8V were applied. The application of an external voltage increased the removal of toluene, m-xylene and p-xylene. The highest removal rate constants at 0.8V were: 0.4±0.1days, 0.34±0.09days and 0.16±0.02days, respectively. At the end of the experiment, the microbial communities were characterized by high throughput sequencing of the 16S rRNA gene. Microorganisms belonging to the families Desulfobulbaceae, Desulfuromonadaceae and Geobacteraceae were enriched on the anodes suggesting that both direct electron transfer and sulfur cycling occurred. The cathodic communities were dominated by the family Desulfomicrobiaceae that may be involved in hydrogen production.

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http://dx.doi.org/10.1016/j.jhazmat.2017.07.054DOI Listing

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