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Cultivation of aerobic hydrogen-oxidizing bacteria on CO2 derived from anaerobic digestion and acid fermentation

  • Natural Resources Institute Finland (Luke)

Research output: Contribution to journalArticleScientificpeer-review

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Abstract

Aerobic hydrogen-oxidizing bacteria (HOB) are promising hosts for converting carbon dioxide (CO2) into biomass and value-added products. However, using biogenic CO2 derived from anaerobic digestion or acid fermentation remains underexplored, particularly regarding the impact of associated impurities on HOB growth. In this study, CO2-rich gas streams from these sources were evaluated as carbon feedstocks for Cupriavidus necator and Xanthobacter autotrophicus. Gas compositions and impurities were analyzed, and minimum inhibitory concentrations (MIC) for typical impurities (H2S, ammonia, trimethylsilanol, and limonene) were determined. The results show that the MIC for the chosen impurities were relatively high, and HOB growth on biogenic CO2 was comparable to growth on pure CO2, indicating that gas purification is not required. Furthermore, bioreactor cultivations demonstrated that biogas-derived CO2 supports polyhydroxybutyrate (PHB) production at levels comparable to pure CO2. These findings suggest that CO2 derived from anaerobic digestion and acid fermentation are viable feedstocks for industrial HOB-based production, while providing new insights into impurity tolerance.
Original languageEnglish
Article number135357
JournalBioresource Technology
Volume460
DOIs
Publication statusPublished - 1 Nov 2026
MoE publication typeA1 Journal article-refereed

Funding

This work was conducted in the jointly funded HIILIKETJU project, with primary funding from Business Finland [funding decision no 8957/31/2022].

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • Acid fermentation
  • Anaerobic digestion
  • CO capture
  • Cupriavidus necator
  • Gas fermentation
  • Hydrogen-oxidizing bacteria
  • Xanthobacter autotrophicus

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