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AD – the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences

AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

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Page 1: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

AD – the biorefinery of the future

Prof Anna Schnürer

Department of Molecular Sciences

Page 2: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

Aerobic Digestion

CO2 + H2O

Heat O2

Organic material

Page 3: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

Anaerobic Digestion (AD)

O2

Microbial degradation processes occurring in the absence of air

Methane

Organic acids

Alcohols

Hydrogen

Diols

Page 4: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

Urban/Rural

Large and small-scale

Biogas

Established

Fertilizer

Anaerobic Digestion 2018

Waste

Page 5: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

Future AD

Chemical platforms for

waste carboxylates

Page 6: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

Komplex polymers

Organic acids,

Alcohols

Hydrogen

Carbon dioxide

Acetate

Methane

Carbon dioxide

Process

management and

input material are

determinative for

end product

Page 7: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

ExtractionADAD Carboxylates

ConversionsPlatform chemicals

Picture modified from Layton et al 2016 Metabol Eng Com 3:245

Plastics

Rubber

Cosmetics

Food additives

Feed

Page 8: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

Biomass for AD

Residues from

biofuel production

Food waste

Manure

Waste water

sludge

H2 via

windpower

Residues from

pulp and paper

Crop/

Crop residues

Algae

Page 9: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

CO

CO2

H2

Acetate

Acetone

Ethanol

Butanol

Butandiol

…..and

Gases from gasification of wood and straw

Acetogens – key players

Page 10: AD the biorefinery of the future - KSLA | Lantbruk · AD –the biorefinery of the future Prof Anna Schnürer Department of Molecular Sciences. Aerobic Digestion CO 2 + H 2 O Heat

The future biorefinery

Organic matter

(Solid, Liquid,Gaseous)

“Carboxylates”Solid fraction

AD1 AD2

Methane

Nutrient

Protein (Feed)Platform chemicals

Energy