DEVELOPMENT OF A FLUIDIZED BED COAL GASIFICATION TECHNOLOGY

Slides:



Advertisements
Similar presentations
Recovery Boiler Modeling
Advertisements

Decomposition of fossil fuels for hydrogen production
Coal Gasification Characteristics: Focus on high ash Indian Coal Presented by Dr. Kalyan Sen Former Director, Central Fuel Research Institute (CFRI) and.
Coal Gasification Technology and Syngas Production
0 Energy and Fuels from Biomass and Waste Prof.dr.ir. Gerrit Brem Energy Technology Onderzoeksdag KIVI NIRIA, 19th of May 2011, Enschede.
Yasunari Matsuno, Ichiro Daigo, Masaru Yamashita
Combustion Calculations
CHEC Annual Day, 2009 Effect of experimental conditions on biomass gasification in an entrained-flow reactor Ke Qin Supervisors: Prof. Anker Degn Jensen.
Fossil fuels Section 1.
Design Steps : Furnace Of A Steam Generator P M V Subbarao Professor Mechanical Engineering Department Selection of Geometric Parameters….
Sara Jones 24NOV08. Background  In most conventional combustion processes, air is used as the source of oxygen  Nitrogen is not necessary for combustion.
Energy Technology Centre in Piteå Modelling, Simulation and Optimisation of a Downflow Entrained-flow Reactor for Pressurised Black Liquor Gasification.
30 th ISTC Japan Workshop on Advanced Catalysis Technologies in Russia Fluidized bed catalytic pyrolysis and gasification of biomass for production of.
Institute of Chemical Engineering page 1 Achema 2012 Chemical Process Engineering Working group Gasification & Gas Cleaning Contact:
Plasma gasification as a viable waste-to-energy treatment of MSW
The Forest Products Industry Gasification Initiative Technical Support Program to Large Scale Demonstration Developed by a Group of experts from Industry,
Mitigation Strategies Review LP Mitigation Strategy #1: Transportation Efficiency A car that gets 30 mpg releases 1 ton of carbon into the air.
Striclty for educational purposes Final project in M.Sc. Course for teachers, in the framework of the Caesarea –Rothschild program of the Feinberg Grad.
MITIGATING CLIMATE CHANGE. WHAT WE KNOW The level of greenhouse gases in the atmosphere have increased, causing the Earth’s temperature to rise. One greenhouse.
Combustion AND Emissions Performance of syngas fuels derived from palm shell and POLYETHYLENE (PE) WASTE VIA CATALYTIC STEAM GASIFICATION Chaouki Ghenai.
Özgül AYYILDIZ.  Thermal Processing of Solid Wastes  Combustion Systems  Pyrolysis  Gasification  Case Studies  Conclusion.
The heat of combustion – in other words, the amount of thermal energy released in the process of burning a mass unit of a given fuel – is a very Important.
 Industrial societies spend huge amounts of energy.  Much of it is supply by electricity which comes from generators in power stations.
Research Topic 3 Biomass Conversion Pyrolysis is the thermal decomposition of biomass in the absence of oxygen or in amounts of oxygen significantly less.
Mechanisms of Fuel Combustion P M V Subbarao Professor Mechanical Engineering Department A Basis for Development of Compact SG Systems……
SynGas Gasifier ALTERNATIVE ENERGY Technology Presentation.
INVESTIGATION OF THE BEHAVIOUR OF LAFIA-OBI COAL IN A FLUIDIZED BED COMBUSTION CHAMBER O.T. POPOOLA and A. A. ASERE Department of Mechanical Engineering,
National Energy Technology Laboratory Driving Innovation ♦ Delivering Results Mehrdad Shahnam 1, Aytekin Gel 1,2, Arun K. Subramaniyan 3, Jordan Musser.
Two-fluid models for fluidized bed reactors: Latest trends and challenges Yassir Makkawi Chemical Engineering.
Air Pollution Sources: Coal-Fired Power Plants April 13, 2011.
Modeling and Simulation of Size Reduction of Fuels in Circulating Fluidized Bed Combustor by Considering Attrition and Fragmentation By Natthapong Ngampradit,
PRESENTED BY: S.Neelakandan, R.S.Karthikeyan, P.Ashok, GUIDED BY: V.S.Venkatesan, Prof. S.Vijayaraj Final Year Mechanical, (HOD/MECH) A.V.C College of.
Biomass & Biofuels San Jose State University FX Rongère March 2009.
ReviewObjectivesExperimentalResultsConclusionFuture work A Fundamental Study of Biomass Oxy- fuel Combustion and Co-combustion Timipere S. Farrow Prof.
Coal combustion/gasification Carbon reactions: Synthetic gas Fuel gas Activated carbon Metallurgical processes Regeneration of coked catalysts Abundant.
WASTE TO FUEL Evaluation and Thermochemical Modeling of High Temperature Steam Gasification of Municipal Solid Waste (MSW) University of Florida Boiling.
Fuels & Energy IB Option AP/IB Chemistry Chanlder High School.
1 Modeling and validation of coal combustion in a circulating fluidized bed using Eulerian-Lagrangian approach U.S. Department of Energy, National Energy.
Design Analysis of Furnace Of A Steam Generator P M V Subbarao Professor Mechanical Engineering Department Perfection of Primary Cause for All that Continues…..
Ansaldo Ricerche S.p.A. Carbon Dioxide capture Berlin, March 2008.
BIOMASS ENERGY International Renewable Energy Youth Competition Una Pale Omri Danziger Avishai Ketko.
High-Temperature Steam Gasification of Agricultural and Municipal Solid Waste March 8, 2012 ASCE Chapter Meeting.
11. 2 Steam Energy Energy that comes from the push of steam.
The Phenomena of PC Particle Combustion
Agenda 1.Quiz on Chapter 4 (5% added to Test 1) 2.Discuss anaerobic digestion and gasification 3.Watch video(s) on “Future of Bioenergy” 4.Example on gaseous.
Xmile today Xmile has been applied successfully in many countries all over the world since 1995 Used by, several (energy) industries, road and shipping.
Effects of Particle Shape and Size on Biomass Combustion Hong Lu, Justin Scott, Tom Fletcher, Larry Baxter Chemical Engineering Department, Brigham Young.
Gasificación de resíduos agricolas Electo Eduardo Silva Lora Universidade Federal de Itajubá MINIFORUM CYTED.
Coal By: J.J. O’Bannon and James Pease. What is coal used for?
Muktar Bashir1 and Yassir Makkawi2
A natural and renewable resource
Soot, Unburned Carbon, and Ultrafine Particle Emissions from Air and Oxy-Coal Flames William J. Morris Dunxi Yu Jost O. L. Wendt Department of Chemical.
Thermo-chemical Conversion Technologies The Basics
__________________________ © Cactus Moon Education, LLC. CACTUS MOON EDUCATION, LLC ENERGY FROM PLANTS AND ANIMALS BIOMASS.
Black Liquor and Recovery boilers
Modeling Light Gas and Tar Yields from Pyrolysis of Green River Oil Shale Demineralized Kerogen Using the CPD Model Ronald J. Pugmire Departments of Chemical.
Energy Balance across pulverizer is very critical for satisfactory
STEAM REFORMING OF COAL TAR BY USING CHEMICAL-LOOPING CARRIERS
RECYCLED CARBON DIOXIDE TO CLEAN ENERGY
Process simulation of switch grass gasification using Aspen Plus
Solid Waste ? The amount of solid waste generated in parallel with increasing population, urbanization and industrialization is increasing rapidly and.
Thermochemical Recycling of Municipal Solid Waste
Thermo-hydraulics of Power Plant Steam Generators
Chapter 11 Section 1: Fossil Fuels
Introduction to Biomass Gasification and Overview of it through Paper Review Special Topics in Fuel Cell Hong-Min Cho Prof. Yong-Tae Kim.
Daniel Torrão Pioª, Luís Tarelhoª
The Process of Electricity Generation
Energy Environment ENVE 411 Energy conversions.
Utilization of Coal Fines : Fluidized bed Gasification
Post Drying Process in PC Coal Firing
Presentation transcript:

DEVELOPMENT OF A FLUIDIZED BED COAL GASIFICATION TECHNOLOGY   Jerzy TOMECZEK Department of Process Energy Silesian University of Technology Presentation, Gliwice, 22 November 2005

RESEARCH ACTIVITY Clean Coal Technologies: · Gasification,   RESEARCH ACTIVITY Clean Coal Technologies: ·      Gasification, ·      Combustion. Low Pollutants Emission Combustion: ·      Mechanisms of NOx Formation, ·      NOx Abatement Technologies. Heat and Mass Transfer in Furnaces: ·      Mathematical Modelling, ·      Semi-Isothermal Combustion Conditions, ·      Fluidized Bed Structure Modelling, ·      Prediction of Deposits in Boilers.

INDUSTRIAL FLAME RESEARCH LABORATORY

INDUSTRIAL FLAME RESEARCH LABORATORY

HIGH TEMPERATURE FURNACE LABORATORY

COAL GASIFICATION PILOT PLANT

DEVOLATILIZER GASIFICATION CONCEPT OF ELEKTRO-GAS PLANT COAL FUEL GAS DEVOLATILIZER LIQUID HYDROCARBONS CHAR GASIFICATION ELECTRIC ENERGY

USED IN GASIFICATION EXPERIMENTS   RANGE OF PARAMETERS USED IN GASIFICATION EXPERIMENTS

CHARACTERISTICS OF GASIFIED MATERIALS   CHARACTERISTICS OF GASIFIED MATERIALS    

FLUIDIZED BED GASIFIER

D3 D3 D3 D2 D2 D2 1.5 m 2.0 m 1.5 m 1.3D1 1.3D1 D1 D D D Characteristic of tested variants of reactor geometry: D=100mm, D1=140 mm, D2=240 mm, D3=300 mm.

LOWER GAS HEATING VALUE, MJ/m3 COAL/AIR RATIO kg/kg Gas heating value as function of coal/air ratio for : 1- coal ● – A and ▲ - B, d=1.0-1.5 mm; 2- coal ○ – A and Δ - B, d=0.5-1.0mm; 3 - char ■ – C and □ - E.

LOWER GAS HEATING VALUE,MJ/m3 STEAM/AIR RATIO kg/kg Gas heating value as function of steam/air ratio: 1- char Δ – C, □ - D and ■ – E, Tb=900oC; 2- coal ● – A and ▲ - B, d=1.0-1.5 mm, Tb=900oC.

DECOMPOSED STEAM XH2O, % STEAM/AIR RATIO kg/kg Decomposed steam as function of steam/air ratio: 1- coal ○ – A and ● – B, char ■ – C and Δ – D for Tb=900oC; 2- coal for Tb=800oC by Tomeczek et al. (1983).

LOWER GAS HEATING VALUE, PARTICLE RESIDENCE TIME t, min MJ/m3 PARTICLE RESIDENCE TIME t, min Gas heating value as function of bed residence time for air gasification and Tb=900oC: 1- coal ● – A and ▲ - B, d=1.0-1.5 mm; 2- coal ○ – A and Δ - B, d=0.5-1.0mm; 3 - char ■ – C and □ - E, d=0.5-1.5mm.

PARTICLE RESIDENCE TIME t, min CARBON CONVERSION xc, % PARTICLE RESIDENCE TIME t, min Carbon conversion as function of particle residence time for Tb=900oC: 1- coal ○– A and ● - B air gasification; 2- char Δ – C, ◊ - D and □ - E air gasification,▲ – C and ■ -E steam - air gasification.

Schematic diagram of the devolatilizer

AMOUNT OF LIQUIDS, kg liquids/kg coal daf PYROLYSYS TEMPERATURE, oC Amount of liquids as a function of pyrolysis temperature: — coal “Siersza” (Tomeczek et al, 1988), — coal “Loy Yang” (Edwards et al, 1985) — coal “Millmerran” (Edwards et al, 1985), — coal eastern U.S. bituminous (Sass, 1988).

COAL DEVOLATILIZATION UNIT DIAGRAM

Connection of a coal devolatizer with the boiler GAS DEVOLATILIZER TAR CHAR HEAT AIR BOILER WATER COMBUSTION GASES STEAM Connection of a coal devolatizer with the boiler

CHARACTERISTICS OF 1, 15, 50 t/h REACTORS     CHARACTERISTICS OF THE 1, 15, 50 t/h DEMONSTRATION SCALE REACTORS   CHARACTERISTICS OF 1, 15, 50 t/h REACTORS