ALLOTHERMAL GASIFICATION for CO-FIRING

Similar documents
INDIRECT vs. DIRECT GASIFICATION

MILENA gasification. Christiaan van der Meijden.

Role of Gasification in a Bio-Based Future

Commercialisation of WtE through gasification technology developed by ECN

The MILENA gasification technology for the production of Bio-Methane

GASIFICATION: gas cleaning and gas conditioning

PYRENA PYRolysis Equipment for New Approaches to produce better bio-oil

PRODUCTION OF BIO METHANE FROM WOOD USING THE MILENA GASIFCATION TECHNOLOGY

LARGE-SCALE PRODUCTION OF FISCHER-TROPSCH DIESEL FROM BIOMASS

Methanation of Milena product gas for the production of bio-sng

Biomass co-firing. Technology, barriers and experiences in EU. Prof.dr.ir. Gerrit Brem. TNO Science and Industry

Working group Gasification & Gas Cleaning

Development of the MILENA gasification technology for the production of Bio-SNG Meijden, van der, C.M.

Brasil EU Workshop Gasification of bagasse to syngas and advanced liquid fuel production. December 8 th 2015 São Paulo, Brasil Martin van t Hoff

Tar removal from biomass product gas; development and optimisation of the OLGA tar removal technology

ECN Research and Development in bioenergy

Indirect gasification of waste to create a more valuable gas

Dual Fluidized Bed Steam Gasification of Coal and Pyrolyzed Coal

oil/residues) is dominated by the ammonia industry. Also the H 2 in oil refineries represent a significant share in present syngas applications.

Smart CHP from Biomass and Waste

OLGA Optimum. Improving the economics of integrated biomass gasification plants by extension of the functionalities of the OLGA tar washer

8 th SGC International Seminar on Gasificaton October 15 th -16 th, 2014 Malmö, Sweden

Indirect gasification

Research on small-scale biomass gasification in entrained flow and fluidized bed technology for biofuel production

Tar removal from low-temperature gasifiers

Mikko Hupa Åbo Akademi Turku, Finland

High efficiency electricity production from SRF/REF through gasification. Malmö Vesa Helanti

HIGH EFFICIENCY ELECTRICITY AND PRODUCTS FROM BIOMASS AND WASTE; EXPERIMENTAL RESULTS OF PROOF OF PRINCIPLE OF STAGED GASIFICATION AND FUEL CELLS

Coupling gasification and metallurgical applications

Introduction of TIGAR and research activities related to Polish coals

Verification of the Performance of Future Energy Resources SilvaGas Biomass Gasifier -- Operating Experience in the Vermont Gasifier

REPORT. Technologies relevant for gasification and methanation in Denmark. Project report September 2012

Paper Mill Repowering with Gasification

ORC BOTTOMING OF A GAS TURBINE: AN INNOVATIVE SOLUTION FOR BIOMASS APPLICATIONS

Fluidised Bed Methanation Technology for Improved Production of SNG from Coal

Conversion of Biomass Particles

Hamm MW Pyrolysis Plant. Integrated Pyrolysis into Power Plant Plant capacity 100,000 t/a Pre-processed Waste Materials

GAS CLEANING FOR INTEGRATED BIOMASS GASIFICATION (BG) AND FISCHER-TROPSCH (FT) SYSTEMS; EXPERIMENTAL DEMONSTRATION OF TWO BG-FT SYSTEMS

Commercial scale gasification to replace fossil fuel in power generation Vaskiluodon Voima140 MW CFB Gasification Project

Biomass to Energy. The NOTAR Gasification Solution. Validity Date : January 2017 Xylowatt Biomass to Energy 0

Biomass Gasification IEA Task 33 Country Report - Finland Piteå, Sweden

Biomass steam gasification - A platform for synthesis gas applications. Reinhard Rauch

THE CHALMERS GASIFIER

A PROMISING POWER OPTION -- THE FERCO SILVAGAS BIOMASS GASIFICATION PROCESS OPERATING EXPERIENCE AT THE BURLINGTON GASIFIER

»New Products made of Synthesis Gas derived from Biomass«

Co-firing of biomass. Lecture on 10 th October Matti Nieminen VTT Technical research centre of Finland Ltd

TORREFACTION AND GASIFICATION TECHNOLOGIES FOR BIOMASS CONVERSION

TECHNO-ECONOMIC ASSESSMENT, THE FINNISH CASE STUDY

20 Years of German R&D on Nuclear Heat Applications

SCR for NO x Control in Coal-fired Power Plants

Gasification of Municipal Solid Waste

Green Fuel Nordic The Smart Way. Utilising RTP TM technology to produce sustainable 2 nd generation bio-oil from local feedstocks

PRODUCTION OF SYNGAS BY METHANE AND COAL CO-CONVERSION IN FLUIDIZED BED REACTOR

Technical and Economic Evaluation of a 70 MWe Biomass IGCC Using Emery Energy s Gasification Technology

Design, Construction, and Commissioning of a Pilot-Scale Dual Fluidized Bed System for CO 2 Capture

Fluidised Bed Combustion

SynTech Energy Centre

Carbon To X. Processes

ADDRESSING THE CONSTRAINTS FOR SUCCESSFUL REPLICATION OF DEMONSTRATED TECHNOLOGIES FOR CO-COMBUSTION OF BIOMASS/WASTE DIS/1743/98-NL ENERGIE

Energy Conversion Technologies for Biomass fuelled small-systems

Thermal Biomass Gasification for CHP. Danish Success Stories

INTEGRATED HEAT, ELECTRICITY AND BIO-OIL PRODUCTION. IEA Biomass Task 34 Meeting in Chicago Jani Lehto, Metso Pekka Jokela, UPM

The Role of Solid Fuel Conversion in Future Power Generation

ENCAP SP4 Chemical looping combustion

Pyrolysis for Biochar Production

Clean Energy. from. Renewables Biomass & Waste

Brown Coal and Biomass Gasification Research at Monash University Chemical Engineering

Gasification: Thermochemical Conversion

COMPARATIVE BEHAVIOUR OF AGRICULTURAL BIOMASS RESIDUES DURING THERMOCHEMICAL PROCESSING

Pyrolysis of cotton stalks and utilization of pyrolysis char for sustainable soil enhancement and carbon storage

FEATURES OF DEVELOPMENT OF BFB-CFB COMBUSTION

WRI S PRE GASIFICATION TREATMENT OF PRB COALS FOR IMPROVED ADVANCED CLEAN COAL GASIFIER DESIGN

FLUIDIZED BED OXY-FUEL COMBUSTION INTEGRATED WITH CO 2 PROCESSING UNIT

CHP Fixed-bed gasifier. HEAT AND ELECTRICITY from wood CHP.

Temperature and pressure effect on gasification process

Biomass steam gasification Mathematical modeling of an innovative pressurized gasification process

Application of CFB (Circulating Fluidized Bed) to Sewage Sludge Incinerator

Progress in Modelling of IGCC Components

Waste treatment technologies I

Electricity and heat generation by combustion and gasification of wood residues and straw a strategic assessment

Principles of Pyrolysis

Energy Generation from Recovered Wood for Greenhouse Gas Reduction

Research Activities on Oxyfuel Combustion at IVD, Universität Stuttgart

Fluidized Bed Combustion as an Excellent Technology

Mathematical Modelling of Biomass Gasification in a Circulating Fluidized Bed CFB Reactor

MULTI-WASTE TREATMENT AND VALORISATION BY THERMOCHEMICAL PROCESSES. Francisco Corona Encinas M Sc.

Application of activated process char for gas treatment of biomass gasification producer gases

Lectio Praecursoria. Lappeenranta University of Technology. From the SelectedWorks of Kari Myöhänen

The novel OLGA technology for complete tar removal from biomass producer gas

The Zero Emission Power Plant Concept

Biomass co-firing in high percentages opportunities in conventional and advanced coal-fired plants

SOME ENERGY-EFFICIENT TECHNOLOGIES IN JAPAN

Utilization of special gases in gas engines -

Power systems Reliable and efficient power generation

Thermodynamic Analysis of Coal to Synthetic Natural Gas Process

Golden/Denver, USA. Dr. Reinhard Rauch, Dr. Jitka Hrbek

Results from the 100 kw dual fluidized bed gasifier at TU Wien

Development of an Innovative 2.5 kw Water- Silica Gel Adsorption Chiller

Biomass Pyrolysis. Tony Bridgwater Bioenergy Research Group Aston University, Birmingham B4 7ET, UK

Task 33 Gasification: Biomassevergasung, ein Grundprozess für Bioraffinerien Praktische Entwicklungserfahrungen

Transcription:

ALLOTHERMAL GASIFICATION for CO-FIRING Bram van der Drift www.ecn.nl

CONTENTS Gasification Allothermal gasification ECN-technology Comparing CFB with allothermal - Efficiency - Ash components Conclusions 2 IEA Clean Coal - 27 March 2012

GASIFICATION the reactions combustion: fuel + (l > 1) flue gas + heat 25% pyrolysis: fuel + heat gas + char + 75% gasification: fuel + (l~0.3) gas solid fuel is converted to gaseous fuel for further processing 3 IEA Clean Coal - 27 March 2012

GASIFICATION for indirect co-firing Conversion to something acceptable for existing boiler: gaseous fuel Option to separate es: less fouling, less coal pollution Can handle hard-to-pulverize fuels Rule of thumb: every 1 Euro/GJ (15 Euro/ton, 3.6 Euro/MWh) lower fuel costs compensates for an extra 250 Euro/kW e capex capital costs 15%, O&M 5%, 0.1 Euro/kWh, 7500/6500 h/y direct/indirect, 40%/38% direct/indirect 4 IEA Clean Coal - 27 March 2012

GASIFICATION for indirect co-firing CFB Metso, wood, Varo (Swe), co-firing lime kiln 35 MW th_biomass CFB FW, Lahti (Fin), co-firing PF boiler, 45 MW th_biomass CFB (Lurgi), waste wood, Geertruidenberg (NL), co-firing PF boiler 85 MW th_biomass 5 IEA Clean Coal - 27 March 2012

ALLOTHERMAL GASIFICATION gas direct: - one vessel - all reactions fuel gasifier gas flue gas allothermal: - two coupled reactors - combustor supplies heat pyrolysis fuel energy combustion fuel 6 IEA Clean Coal - 27 March 2012

ALLOTHERMAL GASIFICATION gas gasification: fuel + (l~0.3) gas gasifier fuel combustion: gas flue gas fuel + (l > 1) flue gas + heat fuel pyrolysis: pyrolysis energy combustion fuel + heat gas + char fuel 7 IEA Clean Coal - 27 March 2012

ALLOTHERMAL GASIFICATION gas direct: - gas contains ~50% N 2 - char remains (5-10%) fuel gasifier gas flue gas indirect: - complete conversion pyrolysis fuel energy combustion - N 2 -free / low-n 2 fuel 8 IEA Clean Coal - 27 March 2012

ALLOTHERMAL GASIFICATION Repotec FICFB gasifier, Güssing (Austria), 2 MW e Rentech, SilvaGas gasifier, Burlington (US), 40 MW th_biomass MILENA-technology, ECN pilot plant, 0.8 MW 9 IEA Clean Coal - 27 March 2012

ALLOTHERMAL GASIFICATION MILENA technology Complete conversion High efficiency Compact design 10-15 MJ/Nm 3 producer gas Test facilities at ECN Tested: wood, demolition wood, grass, lignite, digestion residue, straw, RDF www.milenatechnology.com 10 IEA Clean Coal - 27 March 2012

0.8 MW 25 kw 12 MW 11 IEA Clean Coal - 27 March 2012

ALLOTHERMAL GASIFICATION MILENA gas composition () component concentration unit CO 40 vol% dry basis H 2 24 vol% dry basis CH 4 15 vol% dry basis C 2 H x 4 vol% dry basis C 6 H x 1 vol% dry basis tar 40 g/nm 3 dry basis N 2 4 vol% dry basis CO 2 11 vol% dry basis H 2 S, COS, NH 3, measured in 0.8 MW MILENA pilot plant at ECN: clean wood, olivine bed material, to riser, ~850 C 12 IEA Clean Coal - 27 March 2012

ALLOTHERMAL GASIFICATION MILENA gas composition () component concentration unit CO 26 vol% dry basis H 2 26 vol% dry basis CH 4 12 vol% dry basis C 2 H x 4 vol% dry basis C 6 H x 1 vol% dry basis tar 30 g/nm 3 dry basis N 2 12 vol% dry basis CO 2 17 vol% dry basis H 2 S, COS, NH 3, Calculated for 100 MW MILENA: demolition wood, olivine bed material, to riser (ER=0.03), ~800 C 13 IEA Clean Coal - 27 March 2012

coal + COMPARING THE OPTIONS direct co-firing All energy in boiler All in boiler, so limited to clean biomass Biomass needs to be pulverized biomass large boiler 14 IEA Clean Coal - 27 March 2012

coal + CFB gasifier COMPARING THE OPTIONS indirect co-firing through CFB gasifier Only part of the will end up in boiler, so (more) low quality fuel acceptable Energy loss by /char Ash/char deposit problem Ash/char danger of self-ignition biomass large boiler 15 IEA Clean Coal - 27 March 2012

coal + combustor gasifier COMPARING THE OPTIONS indirect co-firing through allothermal gasifier Only small part of the will end up in boiler, so lower quality fuel acceptable No combustible waste Complex New technology biomass () large boiler 16 IEA Clean Coal - 27 March 2012

coal + coal + CFB gasifier combustor gasifier COMPARING THE OPTIONS calculated efficiency (biomass LHV = 100%) 7% 7% 89.0% biomass 3.5% biomass 90.5% large boiler large boiler () 17 IEA Clean Coal - 27 March 2012

coal + coal + CFB gasifier combustor gasifier COMPARING THE OPTIONS calculated, case 100 MW waste wood, 25% moist 55 kg/h 180 kg/h 6 kg/h biomass 600 kg/h /C 54000 Nm3/h biomass 27000 Nm3/h large boiler large boiler () 18 IEA Clean Coal - 27 March 2012

coal + combustor gasifier ASH COMPONENTS MILENA test Straw as fuel Gasifier at 690 C Lab-MILENA (5 kg/h) biomass K: 8% Na: 9% Cl: 12% P: 17% large boiler () 19 IEA Clean Coal - 27 March 2012

INDIRECT CO-FIRING Indirect co-firing through gasification creates option to treat dirty biomass/waste Because intermediate cleaning (partly) removes components Fuel specs can be relaxed CFB gasifier is proven technology Allothermal gasifier is promising technology 20 IEA Clean Coal - 27 March 2012

ALLOTHERMAL vs. CFB GASIFIER for indirect co-firing No carbon in (less waste, no self-ignition danger) And better efficiency Less to boiler (less fouling, less corrosion, less coal quality issues) Lower gas volume to boiler Freedom to operate at lower temperature (no conversion penalty): more fuel flexible, better removal, higher efficiency 21 IEA Clean Coal - 27 March 2012

FOR EASY GAS COOLING TARA technology Objective: reduction of heavy tars and dust removal: Straightforward slow moving bed design Inexpensive catalyst Positioned directly downstream of gasifier Catalyst regeneration provides heat Preliminary results: Tar dew point reduced from >300 C to below 100 C Dust removal >95% Producer gas cooling becomes a walk in the park 22 IEA Clean Coal - 27 March 2012

Tar Dewpoint Temperature [ o C] TARA effect of residence time 400 300 Typical dew point fluidized bed gasification biomass 200 100 0 0 1 2 3 4 5 Residence Time [s] 23 IEA Clean Coal - 27 March 2012

MORE INFORMATION Bram van der Drift e: vanderdrift@ecn.nl PO Box 1 t: +31 224 56 4515 NL 1755 ZG Petten w: www.ecn.nl the Netherlands publications: www.ecn.nl/publications fuel composition database: www.phyllis.nl tar dew point calculator: www.thersites.nl IEA bioenergy/gasification: www.ieatask33.org Milena indirect gasifier: www.milenatechnology.com OLGA: www.olgatechnology.com / www.renewableenergy.nl SNG: www.biosng.com and www.biocng.com 24 IEA Clean Coal - 27 March 2012