bioliq - BtL pilot plant

Similar documents
Status and Outlook for bioliq-project Syngas Platform for High Performance Fuels

BtL the bioliq process

Country Activities GERMANY

Synthetic fuels and chemical from biomass by the bioliq-process

The Entrained Flow Gasifier in the KIT bioliq process

Techno-economic Optimization Potential of High Temperature Syngas Treatment in Gasification Processes

Electronic Press Kit English

Biomass to fuels! R.Stahl Institut für Technische Chemie IFC 2010 Mai 3 rd 6 th 2009 Dresden, Germany

Country Activities GERMANY

Status of the bioliq-process

Possible Role of a Biorefinery s Syngas Platform in a Biobased Economy Assessment in IEA Bioenergy Task 42 Biorefining

Gasification of Renewable Feedstocks for the Production of Synfuels and 2nd Generation Biofuels

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

The project BioBoost Optimisation of biofuel production from residues and waste materials

Biomass gasification as a Pathway for Sustainable Aviation Fuel. Senior Scientist Jesper Ahrenfeldt, DTU KT

Just add hydrogen Making the most out of a limited resource

RESEARCH GROUP: Future Energy Technology

On the Challenges of Coal Gasification Based Syngas Conversion Systems

Abstract. 1. Introduction

LARGE-SCALE PRODUCTION OF FISCHER-TROPSCH DIESEL FROM BIOMASS

Biosyngas from forest product industry by-products and residues

Outline. Comparative Fast Pyrolysis of Agricultural Residues for Use in Biorefineries. ECI Bioenergy-II:

Entrained-flow gasification to convert biomass into synthesis gas

ENABLING SYNTHESIS OF BIOBASED CHEMICALS & FUELS

Biomass and Biofuels. Biomass

Pyrolysis and Gasification

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

Biofuels Research Opportunities in Thermochemical Conversion of Biomass

»New Products made of Synthesis Gas derived from Biomass«

The CCG Technology of CHOREN

FT-GTL UNLOCKS VALUE FROM NATURAL GAS

PRENFLO TM for biomass and coal (co-) gasification by Max Heinritz-Adrian

LURGI S HP-POX DEMONSTRATION UNIT A MILESTONE TO IMPROVED SYNGAS PRODUCTION

Synthesis of DME and Gasoline from Biomass-Derived Synthesis Gas

through the addition of renewable hydrogen

Press Release Page 1 / 5

Carbon To X. Processes

Innovative Process Technology for Refining Lignite R&D needs

Production of Electricity and/or Fuels from Biomass by Thermochemical Conversion

Thrust 4: Catalytic Conversion of Syn Gas

Energy-Crop Gasification

Mikko Hupa Åbo Akademi Turku, Finland

Transportation fuels from biomass via gasification route

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

Finnish Country Highlights Biomass Gasification in IEA Task 33 meeting, KIT Nov2014 Ilkka Hannula

6 Partners for one advanced technology

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

Indirect Coal Liquefaction Better Solution to Clean Energy System

Nuclear Hydrogen for Production of Liquid Hydrocarbon Transport Fuels

Production and conversion of liquid fuels and hydrogen from biomass and natural gas using microreactor technology

Production of Synthesis Gas by High-Temperature Electrolysis of H 2 O and CO 2 (Coelectrolysis)

Hydrogen production via catalytic water splitting. Prospects of reducing greenhouse emission by hydrogen powered energy technologies

MILENA gasification technology for high efficient SNG production from biomass

Hybrid Energy Solutions for a More Energy-Efficient and Sustainable Future

Synthesis of DME via Catalytic Conversion of Biomass

Fossil Fuel Technologies: An Overview of Germany s R&D Activities & Innovations 2016

Debnath Pal Process Director Peter Brennan Project Director. Advanced Thermal Treatment; Technology Challenges Dr. Ben Herbert R&D Manager

Update on Biomass Gasification in New Zealand

Hydrogen from biomass: large-scale hydrogen production based on a dual fluidized bed steam gasification system

Fremtidens (Bio)brændstoffer

The ARK Reformer. Animal Litter. Synthetic Crude Oil Synthesis Gas (SynGas) Fertilizer Biomass. Solid Waste. Waste to Fuel

Synergistic Energy Conversion Processes Using Nuclear Energy and Fossil Fuels

PROCESS DEVELOPMENT AND SIMULATION FOR PRODUCTION OF FISCHER-TROPSCH LIQUIDS AND POWER VIA BIOMASS GASIFICATION

Refurbishment of catalytic tar reformer and project on green gasoline. John Bøgild Hansen, Haldor Topsøe A/S IEA Meeting, Skive, October 25, 2017

Addressing Opportunities and Challenges for Energy Development in Western Basins of the U.S. using a Hybrid Energy Systems Approach

Large scale Fischer-Tropsch diesel production opportunities and challenges to shift from black (coal) to green (biomass)

We accept the challenge!

Sustainable resources and energy from organic waste

Preliminary Assessment of Energy and GHG Emissions of Ammonia to H2 for Fuel Cell Vehicle Applications

Synthesis Gas Production from Biomass

The CUTEC concept to produce BtL-fuels for advanced powertrains

BIOMASS AND CO2 AVAILABLE FOR SYNTHETIC FUELS (INCL. ELECTROFUELS)

Advanced Biofuels from Fast Pyrolysis Bio-Oil Dr. Tijs Lammens, BTG Bioliquids B.V.

Fossil Energy. Fossil Energy Technologies. Chapter 12, #1. Access (clean HH fuel) Coal. Air quality (outdoor)

Thrust 2: Utilization of Petroleum Refinery Technology for Biofuel Production. Prof. Chunshan Song, Penn State Douglas C.

Intermediate Pyrolysis: A Sustainable Biomass-to-Energy Concept

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

GoBiGas a First-of-a-kind-plant

Sustainable energy storages for mobile machines

VOL. 39, Introduction

HTR-TN. Liquid Hydrocarbons. European Commission, Joint Research Centre, Institute for Energy NL-1755 ZG Petten, The Netherlands. Michael A.

Current Review of DOE s Syngas Technology Development Jai-woh Kim, Dave Lyons and Regis Conrad United States Department of Energy, USA

CHOREN USA. Coal Gasification in Indiana. Solutions for a Low Carbon Footprint Environment. December Christopher Peters CHOREN USA, Houston, TX

Module 1d. The Bioenergy Chain. new technologies HTU, supercritical gasification, pyrolysis importance of energy condensed bio-fuels

Preliminary Economics of Black Liquor Gasification with Motor Fuels Production

Biofuel Sources and Emerging Technologies. The Future of Biofuels in Minnesota Minnesota Environmental Initiative November 13, 2008

Fischer Tropsch Catalyst Test on Coal-Derived Synthesis Gas

Pilot Scale Biorefinery for Sustainable Fuels from Biomass via Integrated Pyrolysis and Catalytic Hydroconversion

Overview of Renewable Energy Technologies: Transforming Our Energy Economy

Process Analysis and Design: Objectives and Introduction

Biomass Gasifiers Christoph Pfeifer. Biogas from Biomass Gasification for Homes and Transport 20-21st January 2010, Gothenburg

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

DEVELOPMENTS IN HARNESSING OF BIO-MASS POWER

Finnish Country Highlights Biomass Gasification in IEA Task 33 meeting May 2015, Ponferrada, Spain Ilkka Hannula

Fluidised Bed Methanation Technology for Improved Production of SNG from Coal

Energy Technology Perspectives 2017 The Role of CCS in Deep Decarbonisation Scenarios

Coupling of power generation with syngas-based chemical synthesis

Advanced Biofuels in Sweden

Biobased materials and fuels via methanol The role of integration

Conversion of Bio-oil to Hydrocarbons Via a Low Hydrogen Route Philip H. Steele and Sathish K. Tanneru

Transcription:

bioliq - BtL pilot plant Aviation Biofuels through Biomass Gasification, IEA Task 33 Engler-Bunte-Institut, Chemische Energieträger Brennstofftechnologie, EBI ceb Institut für Technische Chemie, Vergasungstechnologie, ITC vgt KIT Universität des Landes Baden-Württemberg und nationales Forschungszentrum in der Helmholtz-Gemeinschaft www.kit.edu

Motivation Biomass is the only renewable carbon carrier and on long term to be used for carbon containing products prior to heat power Synthesis gas is a versatile platform for fuels and chemicals productions as well as between biomass and fossil feedstocks Thermo-chemical biorefineries are feedstock flexible and combine the production of fuels, chemicals, heat and power High feedstock potential by using sustainable biomass resources, i.e. biogenic residues Natural gas Fischer-Tropsch synthesis Hydrocarbons Refining LPG Naphta Kerosene Diesel Wax Detergents.. Biomass Gasification to synthesis gas Methanation Methane(SNG) Shift reaction Hydrogen Synthetic fuels and chemicals Coal Methanol synthesis Methanol Further processing Dimethyl ether Ethylene Propylene Gasoline advanced fuels Oxygenates 2

the bioliq BtL Process BtL residual biomass to gasoline de-central feedstock pretreatment central gasification / synthesis pilot plant with 500 kg/h straw pyrolysis, 5 MW gasification fast pyrolysis for slurry production from straw entrained flow gasification high temperature gas upgrading direct DME gasoline synthesis 3

De-centralized / central concept Energy densification of biomass in regional distributed plants by bioliqsyncrude production Economic conversion in large scale to syngas and further refining into fuels & chemicals Energy density: 2 GJ/m 3 25 GJ/m 3 36 GJ/m 3 4

Process chart biosyncrude O 2 (Steam) Gas cleaning and conditioning Biomass Pre-treatment High pressure entrained flow gasification Filter Sorption Catalyst CO 2 and water separation Syngas Slag Synfuel Fast pyrolysis biosyncrude De-central Fuel synthesis Centralized DME synthesis 5

Status of the bioliq project Stage I Stage II Stage III Stage IV Process Fast pyrolysis High pressure entrained flow gasification Gas cieaning and Synthesis I Synthesis II Product BioSyncrude Synthesis gas Dimethyl ether Gasoline Capacity 2 MW (500 kg/h) 5 MW (1 t/h) 150 kg/h < 100 l/h Realization 2005-2008 2008-2013 2009-2011 State In operation In operation In operation Partners: TCI: 64 Mio.EUR 6

bioliq pilot plant Fast pyrolysis (2 MW, 500 kg/h) 2005-2008 Entrained Flow Gasification (5 MW, 1 t/h) 2008-2013 Gasoline synthesis (2 MW, 50 kg/h) 2009-2011 Biomass conditioning BioSyncrude 2011-2014 Tank farm Hot gas cleaning (2 MW, 700 Nm 3 /h) 2009-2011 7

Pyrolysis flow chart In cooperation with: 8

High pressure entrained flow gasification Technical Data 5 MW (M fuel = 1000 kg/h) 40 bar (research), 80 bar (production) Gasification agents: O 2, steam Feed: biosyncrude (slurry) 9

bioliq Entrained Flow Gasifier research focus atomization of high viscous fuel fuel conversion / slagging radiation / analytics numerical simulation technical data membrane wall EFG 40 and 80 bar configuration 1 t/h slurry / 1 MW oxygen / steam blown 10

Helmholtz Virtual Institute for Gasification Technology HVIGasTech Research Field Energy

Integrated Research on Gasification High Pressure Atomization Process Control PAT fuel O 2 / Steam Fuel Conversion Entrained Flow Gasification REGA Raw Syngas Process Efficiency Numerical Simulation Measuring Techniques Slag Materials bioliq EFG 5MW 80 bar Helmholtz Virtual Institute for Gasification Technology Slag Control 12

High Temperature-High Pressure Gas Cleaning HTHP dry sorption of sour gas compounds and alkali Catalytic conversion of hydrocarbons and N-species Entrained flow sorption Syngas from Gasifier Filter Sorption Catalyst Syngas CO 2 separation (optional) 700 m 3 /h STP synthesis gas (40 m³/h at 80 bar, 800 C) Energy savings ca. 10% compared to state-of-the-art gas cleaning Process integration 13 Entrained flow sorption Syngas from Gasifier Syngas Catalytic Ceramic Filter DI Leibold, Prof. Seifert / ITC

Synthesis plant scheme Cycle gas 700 m n ³/h syngas 40 kg/h gasoline 65 bar Flare DMEreactor WGSreactor CO 2 -Absorber Gasoline reactor Distillation Air Gasoline Syngas CO2-Absorber Separator Heavy fraction Process water CO 2 Desorber 14

EnergyLab 2.0 / Energy Systems 2050 Biomass Flash Pyrolysis HP-Gasifier HTHP Gas- Cleaning + Conditioning Synthesis Chemicals/Fuels Solar Power Storage Park (KIT) Wind Park (Partner) HP-Gas Turbine + Generator Gas Heat Plant Network Storage Electrical Electrochemical Chemical Thermal Gas grid Electrical Power Grid Geothermal energy plant (Partner) Thermal Storage (DLR) MW Electrolysis Facility (FZJ) Consumers Buildings Experimental Plants Smart Energy System Simulation and Control Center (SEnSSiCC) 15

bioliq impressions 12 km pipelines, 50 km wiring, 100.000 engineering hours, 250 motors, 1500 t steel, 64 Mio. EUR TCI, 40 pumps etc. 1 st full operation in 2014 16

Investition in die Zukunft gefördert durch die Europäische Union Europäischer Fonds für regionale Entwicklung und das Land Baden-Württemberg 17