Gasification of Biomass for Syngas generation at ETC



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Gasification of Biomass for Syngas generation at ETC Magnus Marklund Senior Scientist/Group Leader ETC Final HighBIO seminar in Kokkola May 24, 2011

in Piteå, Sweden Research foundation founded 1989 Applied research and consultancy Focus on bio-based combustion, gasification and bio-refining Currently 16 employees Independent R&D partner 2

ETC Research Topics Pre-treatment & feeding Operation& Sampling Process modeling Conversion analyses Spray characterization Syngas upgrading 3

Gasification projects 2011 MiUn @ Härnösand Wood 150 kwth DME SAKAB @ Kumla Wood 300 MWth(?) Methanol, SNG Värmlandsmetanol @ Hagfors Wood 107 MWth 100 000 ton/y Methanol Gbg Energi @ Göteborg Wood 20 80 MWth SNG Chalmers @ Göteborg pilot Wood 4 MWth Eon @ Helsingborg(?) Wood 200 MWth SNG Chemrec @ Piteå pilot Black liquor 3 MWth DME 4 ton/day IVAB @ Piteå pilot Forest residue 1 MWth MEVA @ Piteå pilot Wood pellets 500 kwth MEVA @ Hortlax demo Wood pellets 4 MWth CHP 1 MWel Domsjö @ Övik demo Black liquor 200 MWth DME/MeOH 280 ton/day KTH @ Stockholm pilot Wood 800 kwth, CHP VVBGC @ Värnamo Wood 18 MWth SNG, FT

Smurfit Kappa Kraftliner Bio- Power boiler Site View! Smurfit Kappa Kraftliner Chemrec DP1 Solander Science Park ETC BioDME Gasification Centre 5

Forest feedstock in Sweden Today s use of forest feedstock in Sweden Residues 70 TWh Black liquor 40 TWh *Million tons dry biomass Source: Biomassaflöden i svensk skogsnäring 2004, Per Olov Nilsson. Rapport 23-2006 Skogsstyrelsen ISSN 1100-0295 6

What about sustainability? 2 000 RME 3 800 4 500 Ethanol from wheat Ethanol from wood 5 300 Synthetic diesel from wood 6 500 9 000 11 000 km ha, yr Synthetic Diesel - black liquor DME / Methanol Could - wood replace ~45 % of today's fossil use in Sweden by 2050! DME / Methanol - black liquor Source: Volvo AB 7

Direct biomass gasification IVAB Gasifier Pilot plant for direct gasification of biomass powder to syngas (CO + H 2 ) Situated in ETC Gasification Centre Based on the PEBG concept R&D perfomed by ETC and LTU Objective: To verify the technology concept for future commercialization 8

Driving forces A concept for shortest way from forest residue to valuable syngas! 9

Plant FLARE Nominal plant capacity: 1 MW at 10 bar Oxygen blown gasification Refractory lined reactor operating at 1200 1500 C Bubbling quench for cooling and separation Flaring of the product gas (side stream for analysis) 10

Main R&D Challanges Efficient fuel powder preparation Robust and stable fuel feeding Durable construction materials Minimize oxygen consumption Safe and stable process control Control of the varying fuel chemistry 11

Fuel materials Pine [wt-%] dry basis Spruce [wt-%] dry basis Stem wood 69 59 Tops and branches 16 27 Stubs and roots 15 14 12

Fuel materials Stem wood 1 Bark Stumps Wood chips Wood pellets Ash 0.4-0.5 3.5-8 1.5-17.8 0.8-1.4 0.4-1.5 [dry wt-%] Moisture 5-60 45-65 26-57 20-50 7-12 [wt%] Lower heating 18.5-20 18.0-23 19.2-19.4 16.2-19 value, LCV [MJ/kg] Density 390-640 320 250-350, 500-780 [kg/m 3 ] 320-450 2 Volatile >70 69.6-77.2 76-86 >70 matter [wt-%] Ash melting 1400-1700 1300-1700 1000-1400 >1120 point [ C] C [dry wt-%] 48-52 48-52 50-53 47-52 48-52 H [dry wt-%] 6.2-6.4 4.6-6.8 5.7-7.2 6.1-6.3 6.0-6.4 N [dry wt-%] 0.1-0.5 0.3-0.8 0.1-0.2 <0.3 0.27-0.9 O [dry wt-%] 38-42 24.3-42.4 40-42 38-45 ~40 S [dry wt-%] <0.05 <0.05 0.01-0.03 <0.05 0.04-0.08 Cl [dry wt-%] 0.01-0.03 0.01-0.03 0.00-0.20 ~0.02 0.02-0.04 K [dry wt-%] 0.02-0.05 0.1-0.4 0.02-0.06 ~0.02 n.a. Ca [dry wt-%] 0.1-1.5 0.02-0.08 ~0.04 n.a. 1 Without bark 2 The first figure is for softwood and the second for hardwood 13

Plant Commissioning Steps: 1.1 Cold process with just nitrogen throughput at atmospheric pressure. 1.2 Calibration tests of the feeding and burner system in the plant. 1.3 Cold process with just nitrogen throughput at 5 bara pressure. 1.4 Cold process with nitrogen and steam wood powder at atmospheric pressure. 1.5 Controlled heat up of lining to 1000 C. 1.6 Warm process with just nitrogen throughput at 5 bara pressure. 1.7 Warm process with synthetic air (oxygen/nitrogen blended) and steam wood powder at atmospheric pressure. 1.8 Warm process with synthetic air (oxygen/nitrogen blended) and steam wood powder at 2 bara pressure. 1.9 Warm process with pure oxygen and different wood powders up to 5 bara pressure Primarily, bark, stumps and wood residues from pulp mills will be tested. 14

Plant Commissioning Feeding rate (kg/h) Feeding calibration 70 60 50 40 30 20 10 0 0 5 10 15 20 25 Feeding speed (-) Axel 1 Axel 1 + 2 Axel 2 Mean Linear (Mean) 15

Plant Commissioning Camera view in reactor during heating Reactor shell temperature Lining Heater Flenge Shell 16

Plant Commissioning So far: Combustion experiments with synthetic air performed ~8 h accumulated runtime Improved control and stability achieved Highest operated temperature 1350 C Slightly pressurised ~0.5 barg 17

Test av 10 Volvo lastbilar Syntesgas från Chemrecs svartlutsförgasare 4 ton DME / dygn Bio- DME 2008-12 European Project BioDME 7th Framework Programme 18

Fieldtest Partners: 10 Volvo DME trucks in customer operation Demonstrate and verify DME technology in real applications Planned yearly distance 100 000 km per truck (average) Piteå Field test Stockholm Göteborg Jönköping European Project BioDME 7th Framework Programme 19

The DP-1 Gasifier 3 MW thermal power (20 ton BL/day) 30 bar, 1000 ºC Accumulated run time > 12 000 hours

DP-1 Plant BLACK LIQUOR OXYGEN AND ATOMIZING MEDIA COOLING WATER SULFUR REMOVAL GAS COOLER WHITE LIQUOR REACTOR RAW GAS QUENCH GREEN LIQUOR CLEAN, COOL SYNTHESIS GAS WEAK WASH CONDENSATE Source: Chemrec 21

Fuel (submitted) Analysis of trace components 22

Reaktorer: 0.1, 6.6 och 0.1 dm 3, 100 bar och 500 C Aktivt kol H2S rening med ZnO Metanol syntes Tappning av metanol 23

Success! 24

Thank you and good luck with HIGHBIO II! Let us know if we can assist you as an external partner Magnus Marklund, PhD (Fluid Mechanics) Senior Scientist/Project Leader Mail: Box 726, 941 28 Piteå, Sweden Office: +46-911-23 23 85 Mobile: +46-70-227 23 85 Fax: +46-911-23 23 99 Email: magnus.marklund@etcpitea.se Web: http://www.etcpitea.se/secure/staff.php?o=magnus 25