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realmarcinclaude
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Wire Badr/He/Wang MethodsX kinetic-model paper into Methylomicrobium-Chlorella (#67)
doi:10.1016/j.mex.2022.101652 (Badr/He/Wang 2022 MethodsX, "Matlab implementation of a novel semi-structured kinetic model for methanotroph-photoautotroph cocultures") is an orphan cache and a companion to mrr.2023.70 already wired to this community. Add as PARTIAL evidence on the Methane and Carbon Dioxide Mitigation interaction: the kinetic-model paper's bullet "Explicitly models the exchange of in situ produced O2 and CO2 within the coculture" gives independent computational backing for the CO2/biomass dynamics curated here. PARTIAL because the modeled M-P system is generic rather than the specific M. alcaliphilum 20Z + Chlorella HS2 pairing. Co-authored-by: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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kb/communities/Methylomicrobium_Chlorella_Methane_Sequestration_Coculture.yaml

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evidence_source: IN_VITRO
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snippet: nearly an order of magnitude increase in the amount of carbon sequestered in biomass
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explanation: Supports enhanced biomass carbon sequestration in methane-fed cocultures.
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- reference: doi:10.1016/j.mex.2022.101652
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supports: PARTIAL
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evidence_source: COMPUTATIONAL
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snippet: Explicitly models the exchange of in situ produced O2 and CO2 within
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the coculture
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explanation: Badr/He/Wang 2022 MethodsX provides the kinetic-model implementation
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that explicitly captures the in situ O2/CO2 exchange between methanotroph and
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photoautotroph - independent computational backing for the CO2/biomass dynamics
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curated here. Partial because the modeled M-P system is generic rather than
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the specific M. alcaliphilum 20Z + Chlorella HS2 pairing.
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- name: Saline Metabolic Coupling and pH Recovery
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description: >
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The coculture showed robust metabolic coupling under saline conditions and

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