A Single-Culture Bioprocess ofMethanothermobacter thermautotrophicusto Upgrade Digester Biogas by CO2-to-CH4Conversion with H2

Author:

Martin Matthew R.1,Fornero Jeffrey J.1,Stark Rebecca1ORCID,Mets Laurens2ORCID,Angenent Largus T.3

Affiliation:

1. Electrochaea, LLC, 1005 N. Warson Road, Suite 201, St. Louis, MO 63132, USA

2. The University of Chicago, 920 E. 58th Street, Chicago, IL 60637, USA

3. Cornell University, 214 Riley-Robb Hall, Ithaca, NY 14853, USA

Abstract

We optimized and tested a postbioprocessing step with a single-culture archaeon to upgrade biogas (i.e., increase methane content) from anaerobic digesters via conversion of CO2into CH4by feeding H2gas. We optimized a culture of the thermophilic methanogenMethanothermobacter thermautotrophicususing: (1) a synthetic H2/CO2mixture; (2) the same mixture with pressurization; (3) a synthetic biogas with different CH4contents and H2; and (4) an industrial, untreated biogas and H2. A laboratory culture with a robust growth (dry weight of 6.4–7.4 g/L; OD600of 13.6–15.4), a volumetric methane production rate of 21 L/L culture-day, and a H2conversion efficiency of 89% was moved to an industrial anaerobic digester facility, where it was restarted and fed untreated biogas with a methane content of ~70% at a rate such that CO2was in excess of the stoichiometric requirements in relation to H2. Over an 8-day operating period, the dry weight of the culture initially decreased slightly before stabilizing at an elevated level of ~8 g/L to achieve a volumetric methane production rate of 21 L/L culture-day and a H2conversion efficiency of 62%. While some microbial contamination of the culture was observed via microscopy, it did not affect the methane production rate of the culture.

Publisher

Hindawi Limited

Subject

Ecology, Evolution, Behavior and Systematics,Physiology,Microbiology

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