SO 2 - arippa

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Transcript SO 2 - arippa

DSI Options for MATS
Compliance
Pat Mongoven
ARIPPA Aug 2013
MATS Acid Gas Requirements
SO2 < 0.2 lbs/MMBtu or HCl < 0.002 lbs/MMBtu
Can you meet MATS
with just more stone?
What other
options do
you have?
If so – what will it cost?
– Stone Cost?
– Fuel Cost to Calcine?
– Can you get the additional stone/fuel
out of the bed fast enough?
– O & M Costs (more handling, grinding, etc)?
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CFB Boiler – General Schematic
hydrate injection locations
•
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•
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110 MW’s Foster Wheeler
Waste coal fuel
Limestone in boiler with coal
Tubular Airheater
Baghouse for particulate
collection
• No FGD
• Injection locations
• Prior to Airheater
• Coal feeders - SO2 (FSI)
• Baghouse inlet - HCl (DSI)
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Furnace Sorbent Injection location For SO2 Capture
Hydrate Feed
Coal Feed
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SO2 lbs/MM Btu
Test Data 4/2013
MATS Target
Lbs/hr Hydrate
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CFB Test Data 8/14/2013
108 MW’s
1,500 lbs/hr hydrate
27,000 lbs/hr stone
FSI Started
0.35 lbs/MMBtu
0.15 lbs/MMBtu
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CFB Boiler – Burner Injection location For SO2 Capture
Why does hydrate & stone work better than stone alone ??
Stone
CaCO3
+
HEAT
Lime
CaO
SO2
Gypsum
CaSO4
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CFB Boiler – Burner Injection location For SO2 Capture
Why does hydrate & Stone work better than stone alone ??
Stone
CaCO3
+
HEAT
Lime
CaO
SO2
Gypsum
CaSO4
Lime
CaO
Stone
CaCO3
+
HEAT
Lime
Lime
CaO
CaO
Lime
CaO
Lime
CaO
Hydrate
Ca(OH)2
Lime
+ HEAT
CaO
Lime
CaO
Lime
CaO
Lime
CaO
Lime
CaO
Lime
CaO
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SO2
SO2
SO2
SO2
SO2
SO2
SO2
SO2
SO2
SO2
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
Gypsum
CaSO4
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CFB Boiler – Burner Injection location For SO2 Capture
Why does hydrate & Stone work better than stone alone ??
Is a “Steel Curtain”
Or Stone Enough ??
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CFB Boiler – Burner Injection location For SO2 Capture
Why does hydrate & Stone work better than stone alone ??
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CFB Boiler - Baghouse Inlet injection location For HCl Capture
Temperature
~ 3500 F
Hydrate Feed
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HCl Control with Hydrated Lime
• Reactivity (thermodynamic):
– SO3 > SO2 > HF > HCl (thermodynamic)
• Kinetic (collisions) are critical
– Distribution in duct is key to good removal rates
– In flight capture
– Good coating on baghouse bags
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Full Scale CFB for HCl
(2012 – just redone
& awaiting lab results)
(If you’d like an update
when the lab work is
completed, just leave
me a business card)
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Hydrated Lime - Recommended System
• Variable speed feed blower
• Use Air-to-air heat exchanger for
temperature control
• Myrlen air sweeps on cone of weigh bin
• Drop Through Rotary Valve
• Hydrate: Air > 0.6 lbs hyd:lb air
– Pickup velocity >3000 ft/min
• Minimal bends; smooth unions
• Piping/Lance diameter > 1.25”
• Capital Costs ~ $1.5 - $2.0MM
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Waste Coal CFB Summary
• Hydrated lime can achieve MATS compliance in EITHER HCl or
SO2.
• Removal of SO2 was better at the higher furnace temperatures FSI
• Removal of HCl was better at the lower temperature injection
point (pre-bag house) - DSI
• Hydrate did not have any negative effect on Bag House or fly ash.
• Lowest cost MATS compliance – HCl or SO2 ?? Will be plant
specific.
• Mississippi Lime has a production facility in Weirton WV & we’d
be happy to talk with ARIPPA members about future testing to
better understand economics of hydrate feed for MATS
compliance.
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Questions
Questions – please stop by booth 14
Pat Mongoven
Business Development Manager – FGT
[email protected]
314-378-0010
Mississippi Lime Company
3870 S. Lindbergh Blvd.
Suite 200
St. Louis, MO 63127
www.mississippilime.com
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Mississippi Lime – Confidential Information