OxyCoal™ Burner Technology Development Session 3A – Demonstration and Large Scale Pilot Plant Project (2) 2 nd Oxyfuel Combustion Conference, Yeppoon, Australia
OxyCoal™ Burner Technology Development Session 3A – Demonstration and Large Scale Pilot Plant Project (2)
2nd Oxyfuel Combustion Conference, Yeppoon, Australia
14 September 2011 | D W Sturgeon
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Outline
Doosan Power Systems
Demonstration of an Oxyfuel Combustion System - OxyCoal 2
– 90MWth Clean Combustion Test Facility (CCTF)
» 40MWth OxyCoal™ Burner
– Test Programme and Experimental Results
Vattenfall Oxyfuel Technology Sharing Group – Schwarze Pumpe
– Oxyfuel Pilot Plant (OxPP)
» 30MWth OxyCoal™ Burner
– Test Program
Concluding Remarks
Doosan Power Systems
14 September 2011 | D W Sturgeon
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Doosan Power Systems
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Doosan Power Systems is the lead company in a global group which between them provides world-class power plant solutions to power utilities across the globe.
Demonstration of an Oxyfuel Combustion System OxyCoal 2
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System The OxyCoal 2 collaborative project is led by Doosan Power Systems and supported by the Department of Energy and Climate Change.
Lead Company Prime Sponsor
Sponsors
University Participants
UK Government Support
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System Design an OxyCoal™ burner of a type and size (40MWth) applicable to new build and retrofit coal-fired boilers and demonstrate its performance.
Demonstrate the performance and operational envelope of the OxyCoal™ burner with respect to
– Flame stability and flame shape
– Start-up / Shutdown
– Transition between air and oxyfuel firing
– Turndown
– Emissions
Demonstrate successful performance of the OxyCoal™ burner firing at conditions pertinent to the application of an oxyfuel combustion process in a utility power generating plant.
Demonstrate the level of technology readiness of the oxyfuel combustion process.
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System Officially opened on 24th July 2009 Doosan Power Systems’ 40MWth OxyCoal™ demonstration became the world’s largest demonstration of an oxyfuel combustion system.
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System Full-scale testing of the oxyfuel combustion process on Doosan Power Systems’ 90MWth Clean Combustion Test Facility (CCTF).
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System Full-scale testing of the Doosan Power Systems’ 40MWth OxyCoal™ combustion system: Burner Proving (Q3 and Q4 2009) Parametric Testing (Q1 and Q2 2010).
Parametric testing to characterise and investigate the achievable performance of the 40MWth OxyCoal™ burner firing bituminous coal in both air and oxyfuel firing operation in terms of
– Combustion performance
– Thermal performance
Isothermal testing to characterise the aerodynamics of the 40MWth OxyCoal™ burner.
Burner proving of the 40MWth OxyCoal™ burner firing bituminous coal in both air and oxyfuel firing operation in terms of
– Flame Stability
– Control and operability
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System Safe and smooth transitions between air and oxyfuel operation were demonstrated, with realistic CO2 levels achieved (in excess of 75% v/v dry, and up to 85% v/v dry).
Oil Air Firing
(TFGR, PA, SA)
Secondary Air to
Secondary Flue Gas Recycle
Transition
Oil Air/Oxyfuel
Firing (TFGR, PA,
SFGR)
Oil/Coal Air/Oxyfuel
Firing (TFGR, PA,
SFGR)
Coal Air/Oxyfuel
Firing (TFGR, PA,
SFGR)
Primary Air to Primary Flue Gas Recycle
Transition
Coal Oxyfuel Firing
(TFGR, PFGR, SFGR)
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System 40MWth OxyCoal™ burner turndown proven from 100% load to 40% load.
Stable rooted flame maintained for all loads down to 40% with coal ignition within the burner throat/quarl.
Comparable turndown to Doosan Power Systems’ commercially available air firing low NOX axial swirl burners.
40MWt
32MWt
24MWt
20MWt
16MWt
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System NOX expressed as mg/MJ is significantly lower under oxyfuel firing than air firing.
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System SO2 expressed as mg/MJ is significantly lower under oxyfuel firing than air firing.
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OxyCoal 2 Demonstration of an Oxyfuel Combustion System Combustion efficiency under air and oxyfuel conditions, as expressed by CIA, unburnt loss, and CO, is comparable.
Vattenfall Oxyfuel Technology Sharing Group Schwarze Pumpe
14 September 2011 | D W Sturgeon
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Schwarze Pumpe Vattenfall Oxyfuel Technology Sharing Group
The purpose of the pilot plant is to validate engineering work, to learn and better understand the dynamics of oxyfuel combustion and to demonstrate the capture technology
Operation of the Oxyfuel Pilot Plant (OxPP) will
– Build up confidence in oxyfuel technology
– Reduce the risks involved in the industrial utilisation
– Prove the operability of the whole process chain from coal handling to CO2 delivery
The Oxyfuel Pilot Plant (OxPP) project aims to jointly develop oxyfuel combustion technology suitable for commercially viable application in future large-scale power plants.
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Schwarze Pumpe Vattenfall Oxyfuel Technology Sharing Group
Doosan Power Systems has joined the Technology Partnership for the Oxyfuel Pilot Plant (OxPP) project
– Agreement signed between Vattenfall Europe Technology Research GmbH and Doosan Power Systems in December 2010
Doosan Power Systems is responsible for providing an alternative burner (30MWth OxyCoal™ burner) for testing on the 30MWth pilot plant in Schwarze Pumpe, Germany.
The Oxyfuel Pilot Plant (OxPP) tests intend to improve the oxyfuel combustion process as well as establish a better understanding of the behaviour of individual components within the process chain.
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Schwarze Pumpe Vattenfall Oxyfuel Technology Sharing Group Doosan Power Systems OxyCoal™ burner design is based on our existing knowledge, experience and expertise of low NOX air-fired burner technology.
Doosan Power Systems 40 MWth OxyCoal™ Burner for Clean Combustion Test Facility (CCTF), Renfrew, Scotland
– Multi-fuel Burner Test Facility
– Intermittent operation
– Igniters Combustion Engineering pre-mixed gas flame system
– Heavy fuel oil light-up burner
– Pulverised fuel
» Kellingley (UK bituminous coal)
» El Cerrejón (Columbian bituminous coal)
– Common windbox
» Secondary oxidant
» Tertiary oxidant
– Manual adjustment swirlers
– National Instruments Supervisory Control and Data Analysis (SCADA) system
Doosan Power Systems 30MWth OxyCoal™ Burner for Oxyfuel Pilot Plant (OxPP), Schwarze Pumpe, Germany
– Pilot Plant
– Continuous operation
– DURAG high energy spark igniter
– Gas light-up burner
– Pulverised fuel
» BKS (German lignite coal)
– Individual ducts
» Secondary oxidant
» Tertiary oxidant
– Automatic actuated swirlers
– Siemens Power Plant Automation T3000 (SPPA-T3000) web-based instrumentation & control (I&C) system
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Schwarze Pumpe Vattenfall Oxyfuel Technology Sharing Group Project execution by Doosan Power Systems in close collaboration with Vattenfall Europe Technology Research GmbH and according to TÜV (as responsible authority) requirements.
30MWth OxyCoal™ Burner Design – Process
– Mechanical
– Electrical, Control and Instrumentation (EC&I)
30MWth OxyCoal™ Burner Manufacture – Fabrication
– Machining
– Assembly
30MWth OxyCoal™ Burner Installation
30MWth OxyCoal™ Burner Commissioning
– Start-Up
– Air Firing
– Air to Oxyfuel Transition
– Oxyfuel Firing
– Oxyfuel to Air Transition
– Shutdown
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Schwarze Pumpe Vattenfall Oxyfuel Technology Sharing Group Early flame images captured during commissioning show stable air firing (left) and oxyfuel firing (right) flames with flame shapes broadly similar in appearance.
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Schwarze Pumpe Vattenfall Oxyfuel Technology Sharing Group
Operational tests will determine the global performance of 30MWth OxyCoal™ burner and Oxyfuel Pilot Plant (OxPP).
Comparison and analysis of results over a range of conditions will identify clear, definitive trends of burner operating behaviour.
Fundamental tests will allow detailed mapping of the combustion conditions at well defined operating points.
Evaluation will provide greater understanding of the combustion operation at discrete points and the underlying mechanisms responsible.
Testing of the Doosan Power Systems’ 30MWth OxyCoal™ burner: First Tranche (Oct to Dec 2011 – 8 weeks) Second Tranche (Feb to Mar 2012 – 5 weeks)
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Concluding Remarks
Doosan Power Systems has adopted an evolutionary approach to the design and implementation of OxyCoal™ technology combining well proven and commercially available components with state-of-the-art advances in technology.
The results from successful OxyCoal™ burner testing demonstrate Doosan Power Systems’ pioneering expertise in the carbon capture field and mark a major step towards making full-scale carbon capture a reality.
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Commercial and Corresponding Author Contact Details
Peter Holland-Lloyda
Business Development Manager
David Sturgeona
Senior Engineer
a. Doosan Power Systems,
Porterfield Road,
RENFREW.
PA4 8DJ
T +44 (0)141 886 4141
Doosan Power Systems is committed to delivering unique and advanced carbon capture solutions to create a low carbon future.
mailto:[email protected]�mailto:[email protected]�
OxyCoal™ Burner Technology DevelopmentOutlineDoosan Power SystemsDoosan Power SystemsDemonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemOxyCoal 2 Demonstration of an Oxyfuel Combustion SystemVattenfall Oxyfuel Technology Sharing GroupSchwarze Pumpe Vattenfall Oxyfuel Technology Sharing GroupSchwarze Pumpe Vattenfall Oxyfuel Technology Sharing GroupSchwarze Pumpe Vattenfall Oxyfuel Technology Sharing GroupSchwarze Pumpe Vattenfall Oxyfuel Technology Sharing GroupSchwarze Pumpe Vattenfall Oxyfuel Technology Sharing GroupSchwarze Pumpe Vattenfall Oxyfuel Technology Sharing GroupConcluding RemarksCommercial and Corresponding Author Contact Details