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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media Ben Geerlings Residence Palace, Brussels 10th February 2009 SUSTAINABLE ENERGY GOES MAINSTREAM Where EU energy projects meet the media Hydrogen from biomass
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION: some facts –FP6 Integrated Project –non-thermal production of pure hydrogen from biomass –22 partners from 13 countries –from January 2006 until January 2011 –14 M€ budget –10 M€ EU grant
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION: the partners
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media Aim of HYVOLUTION To deliver prototypes of process modules which are needed to produce hydrogen of high quality in a bioprocess which is fed by multiple feedstocks (Development of a 2-stage bioprocess and construction of prototype modules for production of hydrogen)
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION: the whole chain!
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media Target of HYVOLUTION Production costs of hydrogen in a conceptual design deemed feasible and as envisaged for hydrogen production using HYVOLUTION technology
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION: activities Progress beyond business as usual by: –testing various feedstocks –and various strains of bacteria –integrating, in a systematic way, “bio” with physics, chemistry, engineering and socioeconomics Biggest challenge is reducing the production costs to make biohydrogen in 2020 competitive with conventional biofuels
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION 2006-2008 Methodology for selecting biomass –crops and agro-waste considered –evaluation using eight criteria –evaluation summary in suitability map
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media
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HYVOLUTION 2006-2008 (2) Bioprocess issues –strain selection (yield, productivity, feedstock adaptation) –strain improvement (genetic modification, hydrogen metabolism) –robust fermentations (mixed cultures) –bioreactor configuration –process control
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION 2006-2008 (3) Bioreactors (thermophilic and photo- fermentation) –material –costs –reactor volume –ease of use
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION 2006-2008 (4) Gas upgrading –using a membrane contactor H 2 O+MEA non-porous layer porous support H 2 +CO 2 H 2 H 2 O+ MEACOO - + MEAH +
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION 2006-2008 (5) Development of sensor systems for process control Requirements: –high concentration measurements (up to 100%) –availability at low price –resistant to the main components (H 2, CO 2 and H 2 O) –measurement of contaminants (O 2, CH 4 and H 2 S)
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION 2006-2008 (6) Life cycle analysis: –identification of environmental impacts –preliminary results: avoid use of strip gas replace NaOH by Ca(OH) 2 recycle process water avoid addition of external nutrients
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION: 2009-2010 Four feedstocks selected for fermentation tests: –sugar beet –potato steam peels –wheat bran –barley straw
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media HYVOLUTION: 2009-2010 (2) Two case studies: –rural south: Thessaly, Greece –urban north: Rotterdam, The Netherlands –stand-alone plant vs. add-on plant (associated with a local agro-industrial facility)
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SUSTAINABLE ENERGY GOES MAINSTREAM: Where EU energy projects meet the media Hydrogen as the future bio-fuel green www.hyvolution.nl Thank you for your attention!
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