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Journal: bioRxiv
Article Title: Towards complete carbon utilization: Improved methane yield from formate and hydrogen co-feeding through constitutive formate dehydrogenase-gene expression in Methanothermobacter thermautotrophicus ΔH
doi: 10.64898/2026.03.21.713158
Figure Lengend Snippet: Methane evolution and dissolved H 2 concentrations at increasing H 2 partial pressure (pH 2 ). M. thermautotrophicus Z-245 and M. thermautotrophicus ΔH (pFdh) were cultivated in a chemostat bioreactor with 4.17 mmol L -1 h -1 formate feed (black dashed line) and an increase in H 2 partial pressure (pH 2 ) in 7 steps (period a to g). From period b to e both strains consumed H 2 at similar rate to which it was fed, keeping the dissolved H 2 concentration in the liquid phase (cH 2 ) close to 0 mmol L -1 . A switc to 30 vol-% pH 2 (period f) affected the formate consumption and methanogenesis in M. thermautotrophicus Z-245. Further increasing the pH 2 to 90 vol-% caused a drastic increase in cH 2 and both strains showed decreased formate uptake and methane evolution rates. Gray vertical bars indicate the transition point between the periods.
Article Snippet: We obtained Methanothermobacter thermautotrophicus Z-245 (DSM 3720) and
Techniques: Concentration Assay
Journal: bioRxiv
Article Title: Towards complete carbon utilization: Improved methane yield from formate and hydrogen co-feeding through constitutive formate dehydrogenase-gene expression in Methanothermobacter thermautotrophicus ΔH
doi: 10.64898/2026.03.21.713158
Figure Lengend Snippet:
Article Snippet: We obtained Methanothermobacter thermautotrophicus Z-245 (DSM 3720) and
Techniques: Standard Deviation, Concentration Assay
Journal: bioRxiv
Article Title: Towards complete carbon utilization: Improved methane yield from formate and hydrogen co-feeding through constitutive formate dehydrogenase-gene expression in Methanothermobacter thermautotrophicus ΔH
doi: 10.64898/2026.03.21.713158
Figure Lengend Snippet: Gas evolution rates for M. thermautotrophicus Z-245 and M. thermautotrophicus ΔH (pFdh) during formate and H 2 co-feeding for the switch from cultivation period f to g (black dotted line). We increased the H 2 fraction in the inflow from 30 vol-% to 90 vol-%. Formate was fed at 4.16 mmol L −1 h −1 reflecting the carbon in flux (horizontal black dashed line). The sum of CO 2 an CH 4 evolution are shown in violet, and represent the formate uptake rate, disregarding biomass production. The measure formate concentration in the liquid phase is shown in Supplementary Figure S3.
Article Snippet: We obtained Methanothermobacter thermautotrophicus Z-245 (DSM 3720) and
Techniques: Concentration Assay
Journal: bioRxiv
Article Title: Towards complete carbon utilization: Improved methane yield from formate and hydrogen co-feeding through constitutive formate dehydrogenase-gene expression in Methanothermobacter thermautotrophicus ΔH
doi: 10.64898/2026.03.21.713158
Figure Lengend Snippet: Gas evolution rates of M. thermautotrophicus ΔH (pFdh) under improved formate and H 2 co-feeding conditions. After period g (90 vol-% H 2 ) only M. thermautotrophicus ΔH (pFdh) was recovered successfully and further tested. The dotted black lines indicate the start and end of the gas recirculation period (period h). The H 2 fraction of the inlet gas remained unchanged at 30 vol-%. Formate was fed at 4.16 mmol L −1 h −1 reflecting the carbon in flux and maximum theoretical carbon utilization (horizontal dashed line).
Article Snippet: We obtained Methanothermobacter thermautotrophicus Z-245 (DSM 3720) and
Techniques:
Journal: bioRxiv
Article Title: Towards complete carbon utilization: Improved methane yield from formate and hydrogen co-feeding through constitutive formate dehydrogenase-gene expression in Methanothermobacter thermautotrophicus ΔH
doi: 10.64898/2026.03.21.713158
Figure Lengend Snippet: Methane evolution and dissolved H 2 concentrations at increasing H 2 partial pressure (pH 2 ). M. thermautotrophicus Z-245 and M. thermautotrophicus ΔH (pFdh) were cultivated in a chemostat bioreactor with 4.17 mmol L -1 h -1 formate feed (black dashed line) and an increase in H 2 partial pressure (pH 2 ) in 7 steps (period a to g). From period b to e both strains consumed H 2 at similar rate to which it was fed, keeping the dissolved H 2 concentration in the liquid phase (cH 2 ) close to 0 mmol L -1 . A switc to 30 vol-% pH 2 (period f) affected the formate consumption and methanogenesis in M. thermautotrophicus Z-245. Further increasing the pH 2 to 90 vol-% caused a drastic increase in cH 2 and both strains showed decreased formate uptake and methane evolution rates. Gray vertical bars indicate the transition point between the periods.
Article Snippet: We obtained
Techniques: Concentration Assay
Journal: bioRxiv
Article Title: Towards complete carbon utilization: Improved methane yield from formate and hydrogen co-feeding through constitutive formate dehydrogenase-gene expression in Methanothermobacter thermautotrophicus ΔH
doi: 10.64898/2026.03.21.713158
Figure Lengend Snippet:
Article Snippet: We obtained
Techniques: Standard Deviation, Concentration Assay
Journal: bioRxiv
Article Title: Towards complete carbon utilization: Improved methane yield from formate and hydrogen co-feeding through constitutive formate dehydrogenase-gene expression in Methanothermobacter thermautotrophicus ΔH
doi: 10.64898/2026.03.21.713158
Figure Lengend Snippet: Gas evolution rates for M. thermautotrophicus Z-245 and M. thermautotrophicus ΔH (pFdh) during formate and H 2 co-feeding for the switch from cultivation period f to g (black dotted line). We increased the H 2 fraction in the inflow from 30 vol-% to 90 vol-%. Formate was fed at 4.16 mmol L −1 h −1 reflecting the carbon in flux (horizontal black dashed line). The sum of CO 2 an CH 4 evolution are shown in violet, and represent the formate uptake rate, disregarding biomass production. The measure formate concentration in the liquid phase is shown in Supplementary Figure S3.
Article Snippet: We obtained
Techniques: Concentration Assay