Analysis of Emission Changes to Inform New …...Analysis of Emission Changes to Inform New Emission...
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Analysis of Emission Changes to Inform New Emission Projection Analysis
Presented by:
E.H. Pechan & Associates, Inc.5528-B Hempstead Way, Springfield, VA 22151www.pechan.com
EPA’s 18th International Emission Inventory ConferenceApril 14-17, 2009
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AcknowledgementsStudy funding was provided by the Houston Advanced Research Center (HARC) through a grant from TCEQ.• Contacts
– Alex Cuclis – HARC– Kathy Pendleton – TCEQ– Jim Wilson, Andy Bollman, Viola Glenn,
Jackson Schreiber - Pechan
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Project Purpose
• Evaluate 1992-2006 Point Source Trends
• Emissions versus Activity• Identify primary factors affecting
emissions• Use to develop improved forecasts
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Priority Source Categories
• Petroleum Refining• Cement Manufacturing• Electricity Generating Units• Natural Gas Production/Processing• Chemical Manufacturing
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Analysis Period
• Historical 1992-2006• Base Year 2005• Forecast Period 2008-2020
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Petroleum Refining
• Refining Characteristics in Texas– 25 refineries– Some increase in production 1992-2006– 2 closures– Long-term focus on VOC control– More recent NOx control focus
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Petroleum Refining
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Petroleum Refining (cont’d)
• Petroleum Production Estimates– State production totals (Gross Refinery
Inputs), from EIA– Allocated to individual refineries according
to their capacity
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Petroleum Refining (cont’d)
• Texas Growth Forecasts– Annual Energy Outlook reports:
• National capacity• National capacity utilization• Regional capacity
– Regional refinery activity growth• 2005-2020 is 9 percent
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Petroleum Refining (cont’d)
• Refinery Growth Timing– Expected capacity additions – next 3 years– All production growth by 2014– No activity growth after 2014
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Refinery SO2 Control Analysis
• Source Categories for Analysis– Boilers– Blowdown/Flares– Catalytic Crackers– Process Heaters– Sulfur Plants– Turbines– Other, N.E.C.
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Refinery SO2 Control Analysis (cont’d)
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Refinery SO2 Control Analysis (cont’d)
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Refinery SO2 Control Analysis (cont’d)
• Boilers – low emission rates from natural gas and refinery gas
• Continue at same rates post-2005
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Refinery SO2 Control Analysis (cont’d)
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Refinery SO2 Control Analysis (cont’d)
• Sulfur plants – limited change in SO2emission rate expected as rates approach NSPS levels
• NSPS emission rate times capacity at 100% utilization yields a higher SO2estimate than recent actuals
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Refinery SO2 Control Analysis (cont’d)
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Refinery SO2 Control Analysis (cont’d)
• Catalytic Crackers – where not already controlled by WGS– Most important factor:
• Settlement agreements– Recommend: Determine where post-2005
settlements require further SO2 controls and incorporate in CFs
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Cement Manufacturing
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Cement Manufacturing (cont’d)
Data Source Information Provided
TCEQ Point Source Emissions Files
Emissions Estimates
Portland Cement Association, U.S. and Canadian Portland Cement Industry
Kiln Capacity
United States Geological Survey, Minerals Yearbook
Cement Production by Year
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Cement Manufacturing (cont’d)
Number of Operational Kilns/Facilities in Texas
Primary Pollutants:- NOx- SO2
Facilities Kilns1992 11 202000 11 212006 11 22
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Cement Manufacturing (cont’d)
2006 Cement Production (‘000 Tons/Year)
Plant Production Non‐AttainmentHolcim 1,716 DFWBuzzi Unicem 394Ash Grove 743 DFWCemex‐Odessa 463Texas Industries ‐Midlothian 2,603 DFWCapital Aggregates 716Cemex‐Balcones 756Texas Industries ‐ Hunter 651Texas‐Lehigh 946Alamo Cement 711Lehigh Cement 102Total (All Texas) 11,451
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Cement Manufacturing (cont’d)
Texas Cement PlantsDFW outlined in Blue
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Cement Manufacturing (cont’d)
Texas Capacity and Production of Cement, and Resulting NOx Emissions
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Cement Manufacturing (cont’d)
Control Factors - NOx
• DFW area-rates constant at 2005 (or post-control) levels
• Other areas – Long-term NOx rates approach PC/PH rate– 30-45% lower than existing– Could apply by kiln type or average across
TX kilns.
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Natural Gas Production/Processing
Texas Natural Gas Production/Processing Trends
3,000,000
3,500,000
4,000,000
4,500,000
5,000,000
5,500,000
6,000,000
1993
1994
1995
1996
1997
1998
1999
2000
2001
2002
2003
2004
2005
2006
MMCF EIA Processing
OGJ Processing
Production
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Natural Gas Production/Processing (cont’d)
• Gas Production Characteristics in Texas– Production source: Railroad Commission
(county-level production)– Steady increase in production thru 2004,
but accelerated increase in 2005/2006– Large majority in attainment areas, but %
contribution from NAs increased from 5% in 1993 to 14% in 2006 (DFW)
– Major pollutants (2006 emissions in tpy):• SO2 (18,561); VOC (6,368); NOx (3,476)
– Large emission reductions for each pollutant in historical period
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Natural Gas Production/Processing (cont’d)
Natural Gas Production, Attainment Areas
3,600,000
3,800,000
4,000,000
4,200,000
4,400,000
4,600,000
4,800,000
5,000,000
199319
9419
9519
9619
9719
9819
9920
0020
0120
0220
0320
0420
0520
06
MMCF
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Natural Gas Production/Processing (cont’d)
Natural Gas Production, Nonattainment Areas
‐
100,000
200,000
300,000
400,000
500,000
600,000
199319
9419
9519
9619
9719
9819
9920
0020
0120
0220
0320
0420
0520
06MMCF BPA
DFW
HGB
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Natural Gas Production/Processing (cont’d)• Barnett Gas Shale Region
– Core Counties: Denton, Johnson, Tarrant, and Wise– Non-Core Counties: Bosque, Clay, Comanche, Cooke,
Dallas, Ellis, Erath, Hamilton, Hill, Hood, Jack, Montague, Palo Pinto, Parker, and Somervell
*2008 includes only January-October
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Natural Gas Production/Processing (cont’d)
• Gas Processing Characteristics in Texas– Two throughput sources – EIA and OGJ
(state-level only)– Overall decline in processing between
1993 and 2006• EIA reports increase since 2003
– Major pollutants (2006 emissions in tpy):• VOC (2,084); SO2 (198)
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Natural Gas Production/Processing (cont’d)
Natural Gas Processing Throughput
3,000,0003,200,0003,400,0003,600,0003,800,0004,000,0004,200,0004,400,0004,600,000
199219
9319
9419
9519
9619
9719
9819
9920
0020
0120
0220
0320
0420
0520
06MMCF
EIA
OGJ
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Natural Gas Production/Processing (cont’d)
• Texas Activity Growth Forecasts– AEO regional production forecasts:
• Gulf Coast - increase through 2008, significant decline through 2020
• Southwest region - small increase through 2009, fairly steady through 2016, small decrease through 2020
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Natural Gas Production/Processing (cont’d)
Source: Annual Energy Outlook 2005
Basin 2005 2010 2015 2020Fort Worth-Barnett 222 374 434 500
• Texas Activity Growth Forecasts – Gas Production by Basin (billion cubic feet)
• No Natural Gas Processing Forecast Identified– Less gas processed/production (Barnett Shell);
ratio of production/processing = 1.0 to 1.10 through 2001, 2005 =1.36, and 2006 = 1.52
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Natural Gas Production/Processing (cont’d)• Texas Activity Growth Forecasts
– Gas Production• Leveling off with low gas prices• Develop county-level growth factors through 2008 from
Railroad Commission production data• Post-2008 forecasts
– Gulf coast counties using AEO Gulf Coast region forecast– Barnett Shell counties using post-2010 3% annual growth
assumption from AEO– All other counties based on extrapolation of regional trend
– Gas Processing• Compile gas processing throughput through 2008• Post-2008 state growth factors
– Forecast ratio of production/processing– Apply ratio to total state production forecast
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Gas Production Control AnalysisProduction Emission Rates, Attainment
‐
5
10
15
20
25
30
1995 1996 1999 2000 2001 2002 2003 2005 2006
Emission
Rate, Lb/
MMCF
SO2
NOX
VOC
Production Emission Rates, Nonattainment
‐
5
10
15
20
25
30
35
1995 1996 1999 2000 2001 2002 2003 2005 2006
Emission Rate, Lb/MMCF
SO2
NOX
VOC
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Gas Production Control Analysis (cont’d)
• Key Source Categories: VOC (tpy)
Category 1992 2000 2005 2006Glycol Dehydrator Reboiler Still Stack 4,730 3,060 1,174 1,415Valves: Fugitive Emissions 11,272 1,550 1,233 1,179
All Equipment Leak Fugitives 4,547 1,018 953 1,155
Gas Stripping Operations 2,816 4,038 1,141 903
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Gas Production Control Analysis (cont’d)
• Key VOC Control Programs
ProgramSource Categories Geography
Pre-/Post-2005
% Reduction
NESHAP(Major source)
-Glycol Dehydrators-Storage vessels with flash potential-Equipment leaks
State By 2005 Glycol–65%Storage–70%Leaks-49%
NSPS for Gas Processing
Equipment leaks (valves and compressors)
State Mostly by 2005 (began in 1984)
70%
TAC, Chapter 115, Subchapter D, Division 3
Equipment leaks (valves and compressors)
HGB, DFW, BPA
By 2005? except March 2009 for Ellis, Johnson, Kaufman, Parker, & Rockwall counties
??
NESHAP(Area source)
Glycol Dehydrators State Post-2005 (2009/2010)
17%
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Gas Processing Control Analysis (cont’d)
• Key Source Categories: VOC (tpy)
Category 1995 2000 2005 2006Gas Sweetening: Amine Process1 98 281 685 2,038
Glycol Dehydrators: Reboiler Still Vent: Triethylene Glycol
90 103 37 41
1Southern Union plant emissions ranged from 130 to 230 tpy; 2005 emissions = 563 tpy and 2006 emissions = 1,897 tpy.
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Gas Production Control Analysis (cont’d)
• Key VOC Control Programs
ProgramSource Categories Geography
Pre-/Post-2005
% Reduction
NESHAP(Major source)
-Glycol Dehydrators-Storage vessels with flash potential-Equipment leaks
State By 2005 Glycol–65%Storage–70%Leaks-49%
NSPS for Gas Processing
Equipment leaks (valves and compressors)
State Mostly by 2005 (began in 1984)
70%
TAC, Chapter 115, Subchapter D, Division 3
Equipment leaks (valves and compressors)
HGB, DFW, BPA
By 2005? except March 2009 for Ellis, Johnson, Kaufman, Parker, & Rockwall counties
??
NESHAP(Area source)
Glycol Dehydrators State Post-2005 (2009/2010)
17%
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Gas Production Control Analysis (cont’d)
• Key VOC Controls– TCEQ inventory reports nominal
equipment leak emissions in processing categories
– 17% glycol dehydrator reduction by 2010 from area source NESHAP
– TCEQ permit for Southern Union plant limits VOC to 1,080 tpy in March 2009