How to build a comprehensive knowledge platform in Norway Opportunities through cooperation Potential for a "Norwegian BIC"

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1 Biorefinery / Biobased Economy How to build a comprehensive knowledge platform in Norway Opportunities through cooperation Potential for a "Norwegian BIC" Realising the potential of Biorefinery related process expertise in Norway Bernd Wittgens 1

2 Session overview Presentations SINTEF Materials & Chemistry Karin Øyaas, PFI Gudbrand Rødsrud, Borregaard Iren Stoknes, EPAX Øystein Rønning, Research Council of Norwegy Marit Valset, Innovation Norway Time for discussion! 2

3 The Biorefinery Concept in a Biobased Economy Products Fuel Heat & Power Materials & Chemicals 3

4 Petroleum Fractionation Distillation Biomass Pre-treatment Hydrolysis Biomass Geological time scale Gasification Pyrolysis Hydrothermal Liquefaction Bio Refinery Dehydration Oligomerization Hydrogenation Ketonization Decarboxylation Aldol-condensation Hydrogenolysis Cracking Alkylation Isomerization REMOVE oxygen Products: - Jet Fuel - Diesel - Gasoline Thermchem. Platform: - Pyrolysis-oils - Syn. Gas Hydrocarbons: - Alkane - Aromatics ADD oxygen Sugar Platform: - Sugars - Mono; di-alcohols - Acids - Furane Chemicals Biomaterials (Func.) Food Feed Extraction Fermentation Hydrolysis 4

5 Bio-based products from sustainable resources a prioritized research area at SINTEF Feedstock Land and marine based biomass Pretreatment - Mechanical processing - Enzymatic/chemical/acidic hydrolysis Strain development Bio-prospecting Metabolic Engineering Synthetic Biology Enzymes Novel enzymes Molecular evolution Production Fermentation Industrial strains Processes Pyrolysis Catalyst development Catalytic Synthesis Novel catalysts for gas, liquid reactions Catalysis in aqueous phase Process Design Integration Intensification Optimization Process design & optimization Techno-economical evaluation Recovery Processing Modification Testing SINTEF Fisheries and Aquaculture SINTEF Energy Research Products Bio-fuels Lipids, Marine Oils Enzymes/Peptides/Aminoacids Biopolymers & materials Fine-chemicals Biopharmaceuticals Minerals 5

6 Research and opportunities identified Diverse resources: wood, algae, fish, krill, industrial, agricultural, marine waste, etc. Simultaneous utilization of all biomass fractions from one feedstock Biochemical: Robust and efficient (bio)catalysis for pre-treatment and product formation Consolidated bioprocessing for direct product formation from biomass (fractions) Chemical & Thermochemical: Aqueous phase catalysis for conversion of sugars to products Flexible small scale integrated processes for gasification, gas cleaning and conversion Catalytic assisted pyrolysis for improved product quality Heterogeneously-catalyzed depolymerisation and hydrogenolysis of lignin Hydrodeoxygenation of lignin and oligomers Process Design Process integration and intensification Combination of chemical and biotechnological methods in biorefineries production Synergies of integrated biofuel and value-added product formation Smart product recovery strategies (hybride processes) for energy efficient processes Process optimization

7 SINTEF Priority Project (11MNOK/4 years) Materials and Chemistry Energy Research Fisheries and Aquaculture Biobased-products from sustainable resources Harvesting Conservation Storage Mechanical processing Enzymatic hydrolysis Digestion Fermentation Catalysis CBP Distillation Membrane Extraction Seaweed Energy Wood Chemicals Process design & Optimization Technical & economical Evaluation 1. Engage in the whole bio-economy value-chain New processes 2. Establish new value chains New products, new markets 7

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