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The LanzaTechprocess is driving innovation

The LanzaTechprocess is driving innovationGas Feed StreamGas ReceptionCompressionFermentationRecovery ProductTank Process recycleswaste carbon into fuels and chemicals Process brings underutilized carbon into the fuel pool via industrial symbiosis Potential to make materialimpact on the future energy pool (>100s of billions of gallons per year)Novel gas fermentation technology captures CO-rich gases and converts the carbon to fuels and chemicalsProprietaryMicrobeGases are the soleenergy and carbon sourceCOCO + H2CO + H2 + CO2H2 + CO2e-+ H2O+ CO2 Industrial Waste GasSteel, FerroalloysWaste Carbon Streams as a Resource for Gas FermentationBiogasSolid WasteIndustrial, MSWB iomassCO2 ReformingGasificationGas Feed StreamGas ReceptionCompressionFermentationRecovery ProductTankData: IEA, UNEP, Index Mundi, US DOE Billion Ton Update,2010 global production; 2012 proven gas reserves data Available High Volume/ Low Intrinsic Value Non-Food Most point-sourced Gases are the soleenergy and carbon source Pure continuous processAcetogenicMicrobeLiewet al.

Nagaraju et al., 2016, Genome editing of Clostridium autoethanogenum using CRISPR/Cas9. Biotechnol Biofuels 9: 219. Model-guided design Computer aided design tools (BioCAD) Predictive Metabolic model Validated DNA design algorithms (Codon Usage & RBS) Metabolic knowledgebase for identification of new pathways Efficient genome editing

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  Innovation, Driving, Editing, Genomes, Crispr, Genome editing, The lanzatechprocess is driving innovation, Lanzatechprocess

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