2021
DOI: 10.1155/2021/8894455
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Performance Analysis and Microbial Community Evolution of In Situ Biological Biogas Upgrading with Increasing H2/CO2 Ratio

Abstract: The effect of the amount of hydrogen supplied for the in situ biological biogas upgrading was investigated by monitoring the process and evolution of the microbial community. Two parallel reactors, operated at 37°C for 211 days, were continuously fed with sewage sludge at a constant organic loading rate of 1.5 gCOD∙(L∙d)-1 and hydrogen (H2). The molar ratio of H2/CO2 was progressively increased from 0.5 : 1 to 7 : 1 to convert carbon dioxide (CO2) into biomethane via hydrogenotrophic methanogenesis. Changes in… Show more

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Cited by 7 publications
(1 citation statement)
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References 47 publications
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“…Batchwise addition of H 2 to the headspace produced a maximum biogas methane content of 80% with a near-stoichiometric ratio between H 2 consumption and CH 4 production. Another trial using sewage sludge from the same source and continuous H 2 addition achieved a biogas methane content of 90% at a H 2 /CO 2 ratio of 7/1 without any adverse effect on VS degradation or significant VFA accumulation [76].…”
Section: Sewage Sludgesmentioning
confidence: 98%
“…Batchwise addition of H 2 to the headspace produced a maximum biogas methane content of 80% with a near-stoichiometric ratio between H 2 consumption and CH 4 production. Another trial using sewage sludge from the same source and continuous H 2 addition achieved a biogas methane content of 90% at a H 2 /CO 2 ratio of 7/1 without any adverse effect on VS degradation or significant VFA accumulation [76].…”
Section: Sewage Sludgesmentioning
confidence: 98%