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AR226-2339 Fluoropolymers Monitoring Technical Group September 18,2003 Agenda Program Overview - EPA Suggested Priority Change Discussio Landfills Soil Sampling Biota Sampling -*\ Possible Sources of Exposure FPA Manufacture Non-Fluoropolymer Products P Impu POS Ma Fluoropolymer Manufacture S -0 0 0 0 01 (0 Ul High Heat Treated Applications Low Heat Treated Applications Point Source Emissions Population Exposure Material Flow Trans formatio to PFO APFO Manufacture Fluoropolymer Summary Processing Fluoropolymer Manufacture Dry Resin Processing Non Fluoropolymer Products Aqueous Resin Processing APFO Manufacture 99% Reduction in emissions as compared to prior manufacture Air dispersion modeling Water monitoring -- Prior Manufacturer - New technology baseline Program Plant Design LOI LOI/other LOI Tim In p Co Ong Ong >99% Emissions Reduction APFO Manufacture Air Dispersion Modeling Water Monitoring LOI ECA Fluoropolymer Summary Processing Fluoropolymer Manufacture Dry Resin Processing Non Fluoropolymer Products Aqueous Resin Processing Non-Fluoropolymer Products Program Tim Commitment to not sell APFO outside fluoropolymer industry LOI Ong >99% Emissions Reduction APFO Manufacture Air Dispersion Modeling Water Monitoring Fluoropolymer Summary Processing | Fluoropolymer _^ Manufacture Dry Resin Processing Aqueous Resin Processing LOI ECA Fluoropolymer Manufacture Global Material Balance 50% Emissions Reduction Commitment 2002 Status - 48% reduction from the baseline Monitoring/Modeling Commitments - Air dispersion modeling - Groundwater - Soil - Landfill Program pre-LOl pre-LOl LOI LOI/other Other Other Tim Com 2 12/3 Ong (Tod (Tod >99% Emissions Reduction APFO Manufacture Air Dispersion Modeling Water Monitoring LOI ECA Fluoropolymer Summary >50% Emissions Reduction Fluoropolymer Manufacture 1Mr Dispersiol[1 ^Modeling \ ^Vater Sampli]^ ^^lonitoring Processing -> Dry Resin Processing Aqueous -> Resin Processine A^^on ^ k Processing/Articles of Commerce Program nTni" m Articles of commerce testing - "New" Articles of Commerce LOI 12/ - "Aged" Articles of Commerce ECA 2Q Dispersion processors material LOI 12/ balance Incineration testing ECA 6/3 >99% Emissions Reduction APFO Manufacture Air Dispersion Modeling Water Monitoring LOI ECA Fluoropolymer Summary >50% Emissions Reduction Fluoropolymer Manufacture t\.ir Dispersior1 ^Modeling \ ^Vater Sampliing/ ^^[onitonng Processing -^ Dry Resin - Processing Aqueous -> Resin - Processing r ^ o n ^J Fluo^^lymer|]----------------------------------y Promts f Articles of Commerce Te Dispersion Processors M Aged Articles of Comme Incineration Testing EPA Proposal Delay "Articles of Commerce" testing and goal date an accelerate "Air dispersion modeling95 at Fluoropoly manufacturing sites in order to expedite the process determine if additional monitoring (and ECA) is nee these facilities. Impact Program Ti Articles of commerce testing 2/ - "New" Articles of Commerce LOI i ^ wr s -000 Monitoring/Modeling 0 " Commitments 10 - Air dispersion modeling LOI +2 ECA Technical Subgroup Monitoring Landfill Monitoring and Exposure Summ Goal for Today Understand the contribution of landfills PFOA levels in the environment Environmental Assessment F Manufacturing Facilities/Land 1. Characterize emissions and source parameters from facility/landfill 3. Assess Environmental Exposure Potential Landfills Are Regulated An Well Managed Industrial landfills are subject to State waste management requirements: - Most have engineered containment and co systems (i.e., daily and permanent) - Extensive/frequent surface water and groundwater monitoring - Discharges are NPDES permitted i =p - 3S 4 oS < FRE| sou Eg| 2<20Q d0= go= =os s 33 52. 2.8& B4%oze<u 8" E |oy[J Sl Se GhSAelE] ki AhNNe. eSg] J Te 2 hl il 8 a => | |! - ofB il h ] Sl --J Slik ogg <b 25 / 2 1 F A 0) | EXPooos10 oe i Typical Landfill Monitorin Surface Water Monitoring - Ponds - Outfalls - Stormwater - Streams Groundwater Monitoring - Program dictated by hydrogeologic compl - Quarterly or semi-annual Leachate Monitoring What we have learned fro monitoring at landfills... Landfills On-site Summary Item Landfill Type Site Wells Site 1 Site 2 S EnggCap Active So 15 13 Sampling Events Over 20 10 On-site PFOA Range 0.058-30,500 NQ-22.8 N (Ppb) On-site PFOA Mean (Ppb) 2763 2.87 B GW-SW Flow (gpy) 525,600 6,664,900 2,4 I o PFOA Flux (Ibs/yr) 4.03 8.65 ^siisS'' \. Flux Calculation Groundwater Investigation Steering Team (GIST) GIST Offsite Summary-3 Landf Item Sitel Site 2 S GIST Offsite Sample 1-mile 1-mile 2 # Off-site Samples 30 53 Offsite PFOA Range ND-0.636 ND-0.974 N (Ppb) Offsite PFOA Mean 0.04 0.185 (Ppb) Landfills-Overall Impression Landfills are regulated by state permits Permits require: - Engineering controls - Monitoring plans Our experience demonstrates: - Engineering controls are effective for PFO - The monitoring conducted indicates minim PFOA contribution to the environment Actions The other Fluoropolymer LOI signatori will compare the DuPont data with thei industrial landfill data in order to devel an understanding of the contribution of other landfills to PFOA environmental loadings ECA Technical Subgroup Monitoring Soil Sampling Summary Goal for Today Understand the significance of soil sampling in characterizing the overall manufacturing contribution to PFOA le in the environment CATT Defined Soil Ingestio Risk Based Concentration 240 mg APFO/kg soil or 240,000 ug/kg Based on typical child/adult exposure through ingestion scenario Soil Exposure Scenario Exposure assessments for soil typically consi the topmost 1 to 2 feet of the soil column whe accidental ingestion may occur. Exposure to deeper soils is typically only rele in an industrial/construction setting. In that c engineering controls and health and safety measures prevent direct exposure. APME PFOA Adsorption/Desorption Stud Key Results: - Most soil types with low to medium organic carb content displayed very low adsorption capacity. - A high organic content soil/sludge also displayed "Adsorption Coefficient as a function of organic content" or "Koc'\ - Water effectively desorbs PFOA I Conclusion: 0 0 0 0 - PFOA has low affinity for adsorption onto soils ^ PFOA Koc versus Other Chemicals* Cape Fear - Drummer Hidalgo ^-- Keyport Wilmington Sludge * Methylene Chloride 200 400 Low Adsorption 600 Koc (mL/g) Napthalene 800 1000 High A Other Soil Sampling Observati Fine grained soils (i.e., clays and silts) can su higher PFOA "wet weight" concentrations du entrapped pore water Soils below the water table less likely to adso PFOA Weather conditions (i.e., wet or dry) at the tim sampling will affect results Soil Sampling Summary Two key sampling events: In 1998 approximately 247 soil samples were colle at a fluoropolymer facility: - Objective: Develop concentration versus depth profiles - Random locations throughout site - At Solid Waste Management Unit (wastewater pond August 2002 at an off-site location (20 samples) 630-1 620- 610- 600- 590- 580- 570- 560- ^ -0 0 0 0 Random Site Locations (PFOA in ug/kg S ^ \ ''/.;)/. Li (0 'oa |. Q ' I 1'. ,. 't" r. AEE05-S B02 A 06-SE301 22.0 14.0 6.5 5.5 5.5 Z 09-SE301 CAiTT==24 0, AC)06-S B03 AC^06-S B05 34.0 5.0 5.5 55.0 6.0 6.0 12.0 5.5 6.0 5.5 5.5 ' ^. .d ""I"' ...(3.\ e0: ' " 0 ;1: ' .' J '' Y 5.0 5.5 5.5 6.5 5.0 5.0 5.0 16.0 6.0 5.5 12.0 5.5 6.0 Note: Sept. 1998 after 3 months normal preci Solid Waste Management Unit (PFOA in ug CATT = 240, 610^ 600- &yu 580570560- II//// P 04-SB102 50 11000 10000 R 04-SE$02 9500 7900 11000 Q 04-SB 170 48000 Note: Former waste management p constructed with bentonite clay lin Off-site Location-August 2002 (PFOA in u <CY\~n' = 240,0 600-1 h^IW--1 5W- 1 590- OoU 570- \// 110 > ^/ 6.1 /^ /^ 7.5 V 6.9 <-ai 17.0 1.1 18.0 W (3 8.4 t ^'A-. v y-^ 170.0 13.0 3.4 3.3 NQ ND ND 560- x- ND ,- ' a. NQ ND NQ 550- '1 < ND A -l ^ ND ND 540- S 1 Note: Colle ctechafter 6 wee ksof below norrnal precipi 01 M (0 Conclusions Adsorption/Desorption data suggests AP will not adsorb to soils Sample data verifies that APFO does no build up in soils APME PFOA Adsorption/Desorption Stud Key Results: - Most soil types with low to medium organic ca content displayed very low Adsorption Coeffic (Kd). Range: 0.41-8.86 mL/g - A high organic content soil/sludge also display relatively low Kd (12.6-36.8 mL/g) - Water effectively desorbs PFOA Conclusion: m 2 - PFOA has low affinity for adsorption onto soil 0 s EXP000632 Soil Sampling Summary In 1998 approximately 247 soil samples were collected at a fluoropolymer facility: - PFOA Results Surface 0-2 ft Depth: Site-wide: Mean 31.3 ug/kg (40 samples) Waste Pond/Clay Liner: Mean 2,842 ug/kg (4 samp - PFOA Results-Site Soil Boring Profile: 0-2 ft. 4-6 ft. 8-10 ft. 13.5 ug.kg Clay/Silty Clay 20.0 ug/kg Clay/Silty Clay 39.0 ug/kg Clay/Silty Clay 16-18ft.l0.5ug/kgClay/SiltyClay 20-22 ft. 20.0 ug/kg Clay/Silty Clay 40-42 ft. 11.0 ug/kg Sand 60-62 ft. 12.0 ug/kg Sand & Gravel |-0 -*Mean PFOA across site not including waste pond: 40.16 ug/ 0 000> samples) tf> u CATT = 240,000 ug/kg