APPENDIX B.2 GENERALIZED PARTICLE SIZE DISTRIBUTIONS. 9/90 (Reformatted 1/95) Appendix B.2 B.2-1
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1 APPENDIX B.2 GENERALIZED PARTICLE SIZE DISTRIBUTIONS 9/90 (Reformatted 1/95) Appendix B.2 B.2-1
2 B.2-2 EMISSION FACTORS (Reformatted 1/95) 9/90
3 CONTENTS B.2.1 Rationale For Developing Generalized Particle Size Distributions...B.2-5 B.2.2 How to Use The Generalized Particle Size Distributions for Uncontrolled Processes.. B.2-5 Page B.2.3 B.2.4 How to Use The Generalized Particle Size Distributions for Controlled Processes...B.2-20 Example Calculation...B.2-20 References...B /90 (Reformatted 1/95) Appendix B.2 B.2-3
4 B.2-4 EMISSION FACTORS (Reformatted 1/95) 9/90
5 Appendix B.2 Generalized Particle Size Distributions B.2.1 Rationale For Developing Generalized Particle Size Distributions The preparation of size-specific particulate emission inventories requires size distribution information for each process. Particle size distributions for many processes are contained in appropriate industry sections of this document. Because particle size information for many processes of local impact and concern are unavailable, this appendix provides "generic" particle size distributions applicable to these processes. The concept of the "generic" particle size distribution is based on categorizing measured particle size data from similar processes generating emissions from similar materials. These generic distributions have been developed from sampled size distributions from about 200 sources. Generic particle size distributions are approximations. They should be used only in the absence of source-specific particle size distributions for areawide emission inventories. B.2.2 How To Use The Generalized Particle Size Distributions For Uncontrolled Processes Figure B.2-1 provides an example calculation to assist the analyst in preparing particle sizespecific emission estimates using generic size distributions. The following instructions for the calculation apply to each particulate emission source for which a particle size distribution is desired and for which no source specific particle size information is given elsewhere in this document: 1. Identify and review the AP-42 section dealing with that process. 2. Obtain the uncontrolled particulate emission factor for the process from the main text of AP-42, and calculate uncontrolled total particulate emissions. 3. Obtain the category number of the appropriate generic particle size distribution from Table B Obtain the particle size distribution for the appropriate category from Table B.2-2. Apply the particle size distribution to the uncontrolled particulate emissions. Instructions for calculating the controlled size-specific emissions are given in Table B.2-3 and illustrated in Figure B /90 (Reformatted 1/95) Appendix B.2 B.2-5
6 Figure B.2-1. Example calculation for determining uncontrolled and controlled particle size-specific emissions. SOURCE IDENTIFICATION Source name and address: ABC Brick Manufacturing 24 Dusty Way Anywhere, USA Process description: Dryers/Grinders AP-42 Section: 8.3, Bricks And Related Clay Products Uncontrolled AP-42 emission factor: 96 lbs/ton (units) Activity parameter: 63,700 tons/year (units) Uncontrolled emissions: tons/year (units) UNCONTROLLED SIZE EMISSIONS Category name: Mechanically Generated/Aggregated, Unprocessed Ores Category number: 3 Particle size (µm) Generic distribution, Cumulative percent equal to or less than the size: Cumulative mass particle size emissions (tons/year): CONTROLLED SIZE EMISSIONS* Type of control device: Fabric Filter Particle size (µm) Collection efficiency (Table B.2-3): Mass in size range** before control (tons/year): Mass in size range after control (tons/year): Cumulative mass (tons/year): * These data do not include results for the greater than 10 µm particle size range. ** Uncontrolled size data are cumulative percent equal to or less than the size. Control efficiency data apply only to size range and are not cumulative. B.2-6 EMISSION FACTORS (Reformatted 1/95) 9/90
7 Table B.2-1. PARTICLE SIZE CATEGORY BY AP-42 SECTION AP-42 Section Source Category Category Number* AP-42 Section Source Category Category Number* External combustion Ammonium phosphates 1.1 Bituminous and subbituminous coal a Reactor/ammoniator-granulator 4 combustion Dryer/cooler Anthracite coal combustion a 8.7 Hydrofluoric acid 1.3 Fuel oil combustion Spar drying 3 Residual oil Spar handling 3 Utility a Transfer 3 Commercial a 8.9 Phosphoric acid (thermal process) a Distillate oil 8.10 Sulfuric acid b Utility a 8.12 Sodium carbonate a Commercial a Food and agricultural Residential a Defoliation and harvesting of cotton 1.4 Natural gas combustion a Trailer loading Liquefied petroleum gas a Transport Wood waste combustion in boilers a Harvesting of grain 1.7 Lignite combustion a Harvesting machine Bagasse combustion b Truck loading Residential fireplaces a Field transport Residential wood stoves a Meat smokehouses Waste oil combustion a 9.7 Cotton ginning b Solid waste disposal Grain elevators and processing plants a 2.1 Refuse combustion a Alfalfa dehydrating 2.2 Sewage sludge incineration a Primary cyclone b 2.7 Conical burners (wood waste) 2 Meal collector cyclone 7 Internal combustion engines Pellet cooler cyclone 7 Highway vehicles c Pellet regrind cyclone Off highway vehicles Starch manufacturing 7 Organic chemical processes 9.12 Fermentation 6,7 6.4 Paint and varnish Coffee roasting Phthalic anhydride 9 Wood products 6.8 Soap and detergents a 10.2 Chemical wood pulping a Inorganic chemical processes 10.7 Charcoal Urea a Mineral products 8.3 Ammonium nitrate fertilizers a 11.1 Hot mix asphalt plants a 8.4 Ammonium sulfate 11.3 Bricks and related clay products Rotary dryer b Raw materials handling Fluidized bed dryer b Dryers, grinders, etc. b 8.5 Phosphate fertilizers 3 9/90 (Reformatted 1/95) Appendix B.2 B.2-7
8 Table B.2-1 (cont.). AP-42 Section Source Category Category Number* AP-42 Section Source Category Category Number* Tunnel/periodic kilns Gypsum manufacturing Gas fired a Rotary ore dryer a Oil fired a Roller mill 4 Coal fired a Impact mill Refractory manufacturing Flash calciner a Raw material dryer 3 Continuous kettle calciner a Raw material crushing and screening Lime manufacturing a Electric arc melting Mineral wool manufacturing Curing oven 3 Cupola Portland cement manufacturing Reverberatory furnace 8 Dry process Blow chamber 8 Kilns a Curing oven 9 Dryers, grinders, etc. 4 Cooler 9 Wet process Sand and gravel processing Kilns a Continuous drop Dryers, grinders, etc. 4 Transfer station a 11.7 Ceramic clay manufacturing Pile formation - stacker a Drying 3 Batch drop a Grinding 4 Active storage piles a Storage 3 Vehicle traffic on unpaved road a 11.8 Clay and fly ash sintering Crushed stone processing Fly ash sintering, crushing, Dry crushing screening, yard storage 5 Primary crushing a Clay mixed with coke Secondary crushing and screening a Crushing, screening, yard storage 3 Tertiary crushing and screening Western surface coal mining a Recrushing and screening Coal cleaning 3 Fines mill Concrete batching 3 Screening, conveying, handling a Glass fiber manufacturing Phosphate rock processing Unloading and conveying 3 Drying a Storage bins 3 Calcining a Mixing and weighing 3 Grinding b Glass furnace - wool a Transfer and storage 3 Glass furnace - textile a Taconite ore processing Glass manufacturing a Fine crushing 4 B.2-8 EMISSION FACTORS (Reformatted 1/95) 9/90
9 Table B.2-1 (cont.). AP-42 Section Source Category Category Number* AP-42 Section Source Category Category Number* Waste gas a 12.7 Zinc smelting 8 Pellet handling Secondary aluminum operations Grate discharge 5 Sweating furnace 8 Grate feed 4 Smelting Bentonite blending 4 Crucible furnace 8 Coarse crushing 3 Reverberatory furnace a Ore transfer Secondary copper smelting Bentonite transfer 4 and alloying 8 Unpaved roads a Gray iron foundries a Metallic minerals processing a Secondary lead processing a Metallurgical Secondary magnesium smelting Primary aluminum production Steel foundries - melting b Bauxite grinding Secondary zinc processing 8 Aluminum hydroxide calcining Storage battery production b Anode baking furnace Leadbearing ore crushing and grinding 4 Prebake cell a Miscellaneous sources Vertical Soderberg Wildfires and prescribed burning a Horizontal Soderberg a 13.2 Fugitive dust a 12.2 Coke manufacturing a 12.3 Primary copper smelting a 12.4 Ferroalloy production a 12.5 Iron and steel production Blast furnace Slips Cast house a a Sintering Windbox Sinter discharge Basic oxygen furnace a a a Electric arc furnace a 12.6 Primary lead smelting a * Data for numbered categories are given Table B.2-2. Particle size data on "a" categories are found in the AP-42 text; for "b" categories, in Appendix B.1; and for "c" categories, in AP-42 Volume II: Mobile Sources. 9/90 (Reformatted 1/95) Appendix B.2 B.2-9
10 Figure B.2-2. CALCULATION SHEET SOURCE IDENTIFICATION Source name and address: Process description: AP-42 Section: Uncontrolled AP-42 emission factor: Activity parameter: Uncontrolled emissions: (units) (units) (units) UNCONTROLLED SIZE EMISSIONS Category name: Category number: Particle size (µm) Generic distribution, Cumulative percent equal to or less than the size: Cumulative mass particle size emissions (tons/year): CONTROLLED SIZE EMISSIONS* Type of control device: Particle size (µm) Collection efficiency (Table B.2-3): Mass in size range** before control (tons/year): Mass in size range after control (tons/year): Cumulative mass (tons/year): * These data do not include results for the greater than 10 µm particle size range. ** Uncontrolled size data are cumulative percent equal to or less than the size. Control efficiency data apply only to size range and are not cumulative. B.2-10 EMISSION FACTORS (Reformatted 1/95) 9/90
11 Table B.2-2. DESCRIPTION OF PARTICLE SIZE CATEGORIES Category: 1 Process: Stationary Internal Combustion Engines Material: Gasoline and Diesel Fuel Category 1 covers size-specific emissions from stationary internal combustion engines. The particulate emissions are generated from fuel combustion. REFERENCES: 1,9 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. 9/90 (Reformatted 1/95) Appendix B.2 B.2-11
12 Table B.2.2 (cont.). Category: 2 Process: Combustion Material: Mixed Fuels Category 2 covers boilers firing a mixture of fuels, regardless of the fuel combination. The fuels include gas, coal, coke, and petroleum. Particulate emissions are generated by firing these miscellaneous fuels. REFERENCE: 1 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. B.2-12 EMISSION FACTORS (Reformatted 1/95) 9/90
13 Table B.2.2 (cont.). Category: 3 Process: Mechanically Generated Material: Aggregate, Unprocessed Ores Category 3 covers material handling and processing of aggregate and unprocessed ore. This broad category includes emissions from milling, grinding, crushing, screening, conveying, cooling, and drying of material. Emissions are generated through either the movement of the material or the interaction of the material with mechanical devices. REFERENCES: 1-2,4,7 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. 9/90 (Reformatted 1/95) Appendix B.2 B.2-13
14 Table B.2.2 (cont.). Category: 4 Process: Mechanically Generated Material: Processed Ores and Nonmetallic Minerals Category 4 covers material handling and processing of processed ores and minerals. While similar to Category 3, processed ores can be expected to have a greater size consistency than unprocessed ores. Particulate emissions are a result of agitating the materials by screening or transfer during size reduction and beneficiation of the materials by grinding and fine milling and by drying. REFERENCE: 1 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. B.2-14 EMISSION FACTORS (Reformatted 1/95) 9/90
15 Table B.2.2 (cont.). Category: 5 Process: Calcining and Other Heat Reaction Processes Material: Aggregate, Unprocessed Ores Category 5 covers the use of calciners and kilns in processing a variety of aggregates and unprocessed ores. Emissions are a result of these high temperature operations. REFERENCES: 1-2,8 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. 9/90 (Reformatted 1/95) Appendix B.2 B.2-15
16 Table B.2.2 (cont.). Category: 6 Process: Grain Handling Material: Grain Category 6 covers various grain handling (versus grain processing) operations. These processes could include material transfer, ginning and other miscellaneous handling of grain. Emissions are generated by mechanical agitation of the material. REFERENCES: 1,5 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. B.2-16 EMISSION FACTORS (Reformatted 1/95) 9/90
17 Table B.2.2 (cont.). Category: 7 Process: Grain Processing Material: Grain Category 7 covers grain processing operations such as drying, screening, grinding, and milling. The particulate emissions are generated during forced air flow, separation, or size reduction. REFERENCES: 1-2 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. 9/90 (Reformatted 1/95) Appendix B.2 B.2-17
18 Category: 8 Process: Melting, Smelting, Refining Material: Metals, except Aluminum Table B.2.2 (cont.). Category 8 covers the melting, smelting, and refining of metals (including glass) other than aluminum. All primary and secondary production processes for these materials which involve a physical or chemical change are included in this category. Materials handling and transfer are not included. Particulate emissions are a result of high temperature melting, smelting, and refining. REFERENCES: 1-2 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. B.2-18 EMISSION FACTORS (Reformatted 1/95) 9/90
19 Table B.2.2 (cont.). Category: 9 Process: Condensation, Hydration, Absorption, Prilling, and Distillation Material: All Category 9 covers condensation, hydration, absorption, prilling, and distillation of all materials. These processes involve the physical separation or combination of a wide variety of materials such as sulfuric acid and ammonium nitrate fertilizer. (Coke ovens are included since they can be considered a distillation process which separates the volatile matter from coal to produce coke.) REFERENCES: 1,3 Particle Size, µm Cumulative % Stated Size (Uncontrolled) Minimum Maximum Standard Deviation 1.0 a a a a a a calculated from data reported at 2.5, 6.0, and 10.0 µm. No statistical parameters are given for the calculated value. 9/90 (Reformatted 1/95) Appendix B.2 B.2-19
20 B.2.3 How To Use The Generalized Particle Size Distributions For Controlled Processes To calculate the size distribution and the size-specific emissions for a source with a particulate control device, the user first calculates the uncontrolled size-specific emissions. Next, the fractional control efficiency for the control device is estimated using Table B.2-3. The Calculation Sheet provided (Figure B.2-2) allows the user to record the type of control device and the collection efficiencies from Table B.2-3, the mass in the size range before and after control, and the cumulative mass. The user will note that the uncontrolled size data are expressed in cumulative fraction less than the stated size. The control efficiency data apply only to the size range indicated and are not cumulative. These data do not include results for the greater than 10 µm particle size range. In order to account for the total controlled emissions, particles greater than 10 µm in size must be included. B.2.4 Example Calculation An example calculation of uncontrolled total particulate emissions, uncontrolled size-specific emissions, and controlled size specific emission is shown in Figure B.2-1. A blank Calculation Sheet is provided in Figure B.2-2. Table B.2-3. TYPICAL COLLECTION EFFICIENCIES OF VARIOUS PARTICULATE CONTROL DEVICES a (%) AIRS Code b Type Of Collector Particle Size (µm) Wet scrubber - hi-efficiency Wet scrubber - med-efficiency Wet scrubber - low-efficiency Gravity collector - hi-efficiency Gravity collector - med-efficiency Gravity collector - low-efficiency Centrifugal collector - hi-efficiency Centrifugal collector - med-efficiency Centrifugal collector - low-efficiency Electrostatic precipitator - hi-efficiency Electrostatic precipitator - med-efficiency boilers other 012 Electrostatic precipitator - low-efficiency boilers other 014 Mist eliminator - high velocity >250 FPM Mist eliminator - low velocity <250 FPM B.2-20 EMISSION FACTORS (Reformatted 1/95) 9/90
21 Table B.2-3 (cont.). AIRS Code b Type Of Collector Particle Size (µm) Fabric filter - high temperature Fabric filter - med temperature Fabric filter - low temperature Process change NA NA NA 049 Liquid filtration system Packed-gas absorption column Tray-type gas absorption column Spray tower Venturi scrubber Process enclosed Impingement plate scrubber Dynamic separator (dry) Dynamic separator (wet) Mat or panel filter - mist collector Metal fabric filter screen Dust suppression by water sprays Dust suppression by chemical stabilizer or wetting agents Gravel bed filter Annular ring filter Fluid bed dry scrubber Single cyclone Multiple cyclone w/o fly ash reinjection Multiple cyclone w/fly ash reinjection Wet cyclonic separator Water curtain a Data represent an average of actual efficiencies. Efficiencies are representative of well designed and well operated control equipment. Site-specific factors (e. g., type of particulate being collected, varying pressure drops across scrubbers, maintenance of equipment, etc.) will affect collection efficiencies. Efficiencies shown are intended to provide guidance for estimating control equipment performance when source-specific data are not available. NA = not applicable. b Control codes in Aerometric Information Retrieval System (AIRS), formerly National Emissions Data Systems. 9/90 (Reformatted 1/95) Appendix B.2 B.2-21
22 References For Appendix B.2 1. Fine Particle Emission Inventory System, Office Of Research And Development, U. S. Environmental Protection Agency, Research Triangle Park, NC, Confidential test data from various sources, PEI Associates, Inc., Cincinnati, OH, Final Guideline Document: Control Of Sulfuric Acid Production Units, EPA-450/ , U. S. Environmental Protection Agency, Research Triangle Park, NC, Air Pollution Emission Test, Bunge Corp., Destrehan, LA, EMB-74-GRN-7, U. S. Environmental Protection Agency, Research Triangle Park, NC, I. W. Kirk, "Air Quality In Saw And Roller Gin Plants", Transactions Of The ASAE, 20:5, Emission Test Report, Lightweight Aggregate Industry. Galite Corp., EMB- 80-LWA-6, U. S. Environmental Protection Agency, Research Triangle Park, NC, Air Pollution Emission Test, Lightweight Aggregate Industry, Texas Industries, Inc., EMB-80-LWA-3, U. S. Environmental Protection Agency, Research Triangle Park, NC, Air Pollution Emission Test, Empire Mining Company, Palmer, Michigan, EMB-76-IOB-2, U. S. Environmental Protection Agency, Research Triangle Park, NC, H. J. Taback, et al., Fine Particulate Emissions From Stationary Sources In The South Coast Air Basin, KVB, Inc., Tustin, CA, K. Rosbury, Generalized Particle Size Distributions For Use In Preparing Particle Size- Specific Emission Inventories, U. S. EPA Contract No , PEI Associates, Inc., Golden, CO, B.2-22 EMISSION FACTORS (Reformatted 1/95) 9/90
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