| The following is a detailed list of the EPA methods performed by AmTest Air Quality: |
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Method 1 - Traverse Points |
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Method 1A - Small Ducts |
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Method 2 - Velocity - S-type Pitot |
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Method 2A - Volume Meters |
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Method 2B - Exhaust Volume Flow Rate |
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Method 2C - Standard Pitot |
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Method 2D - Rate Meters |
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Method 2E - Landfill Gas Production Flow Rate |
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Methods 2F, 2G, & 2H - 3-D Probes |
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Method 3 - Molecular Weight |
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Method 3A - CO2, O2 - Instrumental |
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Method 3B - CO2, O2 - Orsat |
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Method 3C - CO2, CH4, N2O, O2 - TCD |
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Method 4 - Moisture Content |
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Method 5 - Particulate Matter (PM) |
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Method 5A - PM Asphalt Roofing (Particulate Matter) |
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Method 5B - PM Nonsulfuric Acid (Particulate Matter) |
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Method 5D - PM Baghouses (Particulate Matter) |
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Method 5E - PM Fiberglass Plants (Particulate Matter) |
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Method 5F-PM Fluid Catalytic Cracking Unit |
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Method 5i - Determination of Low Level Particulate Matter Emissions |
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Method 6 - Sulfur Dioxide (SO2) |
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Method 6A - SO2, CO2 |
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Method 6B - SO2, CO2 - Long Term Integrated |
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Method 6C - SO2 - Instrumental |
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Method 7 - Nitrogen Oxide (NOx) |
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Method 7A - NOx - Ion Chromatographic Method |
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Method 7D - NOx - Ion Chromatographic |
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Method 7E - NOx - Instrumental |
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Method 8 - Sulfuric Acid Mist |
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Method 9 - Visual Opacity |
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Method 10 - Carbon Monoxide-NDIR |
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Method 10A - CO for Certifying CEMS |
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Method 10B - CO from Stationary Sources |
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Method 11 - H2S Content of Fuel |
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Method 12 - Inorganic Lead |
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Method 13A - Total Fluoride (SPADNS Zirconium Lake) |
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Method 13B - Total Fluoride (Specific Ion Electrode) |
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Method 14 - Fluoride for Primary Aluminum Plants |
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Method 14A - Total Fluoride Emissions from Selected Sources at Primary Aluminum Plants |
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Method 15 - Hydrogen Sulfide, Carbonyl Sulfide, and Carbon Disulfide |
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Method 15A - Total Reduced Sulfur (TRS Alt.) |
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Method 16 - Sulfur (Semicontinuous Determination) |
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Method 16A - Total Reduced Sulfur (Impinger) |
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Method 16B - Total Reduced Sulfur (GC Analysis) |
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Method 16A/6C - (Analyzer Method) |
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Method 17 - In-Stack Particulate (PM) |
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Method 18 - VOC by GC |
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Method 19 - SO2 Removal & PM, SO2, NOx Rates from Electric Utility Steam Generators |
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Method 20 - NOx from Stationary Gas Turbines |
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Method 21 - VOC Leaks |
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Method 22 - Fugitive Opacity |
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Method 23 - Dioxin and Furan |
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Method 24 - Surface Coatings |
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Method 24A - Printing Inks and Related Coatings |
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Method 25 - Gaseous Non-Methane Organic Emissions |
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Method 25A - Gaseous Organic Concentration (Flame Ionization) |
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Method 25B - Gaseous Organic Concentration (Infrared Analyzer) |
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Method 25C - NMOC in Landfill Gases |
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Method 26 - Hydrogen Chloride, Halides, Halogens |
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Method 26A - Hydrogen Halide & Halogen-Isokinetic |
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Method 29 - Metals Emissions from Stationary Sources |
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Method 101 - Mercury from Chlor-Alkali Plants (Air) |
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Method 101A - Mercury from Sewage Sludge Incinerators |
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Method 102 - Mercury from Chlor-Alkali Plants (Hydrogen Streams) |
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Method 103 - Beryllium Screening Method |
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Method 104 - Beryllium Emissions Determination |
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Method 105 -Mercury in Wastewater Treatment Plant Sewage Sludge |
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Method 106-Determination of Vinyl Chloride |
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Method 108 - Particulate & Gaseous Arsenic emissions |
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Method 111 - Polonium-210 Emissions |
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Method 114 - Radionuclide Emissions |
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Method 115 - Radon-222 Emissions |
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Method 201 - PM10 (In-stack, CRS) |
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Method 201A - PM10 (In-stack, CRS) |
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Method 202 - Condensible Particulate Matter |
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Method 301 - Validation Protocol |
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Method 306 - Chromium Emissions Electroplating/Anodizing |
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Method 308 - Methanol Emissions |
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Method 315 - PM and MCEM from Aluminum Production Facilities |
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Method 316 - Sample & Analysis for Formaldehyde Emissions in the Mineral Wool & Wool Fiberglass Industries |
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Method 318 - Extractive FTIR Method for Measurement of Emissions from the Mineral Wool and Wool Fiberglass Industries |
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Method 320 - Vapor Phase Organic & Inorganic Emissions by Extractive FTIR |
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Method 321 - Gaseous HCl Emissions at Portland Cement Kilns by FTIR |
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EMC Conditional Test Methods - This is a list of source test methods that have not yet been promulgated by EPA. AmTest Air Quality utilizes these methods when appropriate. |