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AR226-3347 Analytical challenges in determination of Telo Alcohol and Telomer-derived fluorosurfactan polymers4n biological and environmental ma Bogdan Szostek^^lteith B. Prickett1, S. Mark Kenne and Mary A. Kaiser2 lDuPont Haskell Laborato^ foHiealth and Environme Sciences^fewarky^DE, USA 2 DuPont Centra I Research andDwe/opment^Wfmington USA SETAC Europe 13th Annual Meeting, Hamburg, Germany / 0 s--"^^ 0^-"^0 ^m 2 in m Z 2: 2= ^ (U c cu (U (D 4-1 fU 4-J (U ^ >. U 0 =3 (D 0- i i + "1 b ---s + <t x & 0 2 u i N + b <t s--^ U I 0 N Q- 'X U m 0s 0 LO CO N I U fM U sl ^ 0 is IS (N 1 I H (M N C (N U x fD I U u 4-> U (D N U 1 4- I CM N fD N U U I I n-- 1 U U =3 U ^ c 1 1 LO l 3 C c C LO CM ---^ M N ^-N^ .y U LL. U LL LL LL "C i U U ' 0i U M LL 'PS i m C 8 m , U LL. LL 0 LL ^ U U z u I !4' %5\ I 00 ^01 5 ^s^ffl i" S^-J 3(-NC^T u oE^u ^ SP rsl F ^ ^ ^ (u J~ ^^T.^ ^^ ^. m ^ m ^ ^- ^ s" ^rR^ I u ^ | .1 i &.|^ , ^^ 0w .^^ tj a ^-^5^0 2 tn OT Q- 5 ,?-. ^ c & > 2: en > =) 0- i i i i < i Basics of GEMS method -- EI spectra } [my] peldsnqmil] MTBE Ethyl Acetate MeOH IPA method - Chromatography Column perfor Abundance 7000 6000 5000 4000 3000 2000 < / 1000 Time-> 3. i0 3.80 4.00 4.20 4.40 4.60 4.80 5.00 5.20 5.4 Ahis^-iAnM 7000 6000 5000 9 00 N) I--1 > 4000 | 3000 i 2000 L 1000 'Jl-Y~^- time-, 3.60 3.80 4.00 4.20 4.40 4.60 4.80 5.00 5.20 5. Abndantf" 7000 6000 5000 4000 3000 L 2000 1000 ^ /L. '!i":{i-:' 3.60 3.80 4.00 4.20 4.40 4.60 4.80 5.00 5.20 6. -------- -- 8-2 TBA-- space losses from water [ : Ir 10 mL. glass vial; 10mL water; 8-2 TBA at 150pg/L 120 tw100 2a ey 20 || 0 o 2 4 8 8 0 | | Time [hrs] | |i [a] else] ethod validation and sample Experiment Results (% r^overy st. 10 mi glass vial; 5 mi water; 8-2 TBA at 150 WA Water Ihr type RT 1 week Frozen Iweek RT Iweek RT (No foil) Well Pond 1026 982 Creek 996 Sea 962 985 916 865 865 6414 5712 536 929 354 302 298 298 - validation and sample stora Results (% recovery ^t, dev.) 15|ig/L8-2TBA Water Ihr type RT 1 week Frozen 1 week RT Iweek RT (no foil) Well Pond 945 946 Creek 916 Sea 945 1084 ---- --- ---- 284 --- ---- ----, 144 ---- --- ---- _1_5__p_g_/_L__8_-2__T__B-A^-h_i_s_S__e_a__w_a_t_e_r_ 497 Ion 31.00 -8-2-TBA 4.00 4.50 5.00 5.50 6.00 6.50 7.00 7.50 8.00 8.50 9.00 9.50 ion 33.00 D-8-2 TBA 4.00 4.50 5,00 5.50 6.00 6.50 7.00 7.50 8.00 8.50 9.00 9.50 Extraction: 2 g soil, spike 8-2 TBA; add 1 mL H^O; extract with 6 mL hexane Clean-up: SPE: Si, 100 mg /10 mL (1ST) 1. 2 mL IPA and 2 mL Hexane 2. Load hexane extract 3. Wash with 6 mL hexane 4. Elute with 1 mL IPA Results for 150 |ig/g s Soil type Poiazzo (44% sand, 26% slit, 30% clay) Key Port (17% sand, 62% slit, 21% clay) Hildago (52% sand, 20% slit, 28% clay) White Clay (98% sand, 2% slit) Soil (% Rec. stdev) 874 8815 8111 876 soil - chromatograms Soils Poiazzo soil extract Ion 31 : 8-2 TBA 404550556065707580859095 -D Ion 33 : D-8-2 TBA 40 45/50 55 60 65 70 75 80 85 90 95--D Abutida.'lai 1000 900 800 700 600 SOO 400 300 200 100 TaTis-,-. 4.81 ^ Ion 95.00 jM)^^ ll \i^niUV IVVt W^/V 'WT W OO 4so B-00 5-SO 6.00 6.50 7.00 ^^ Vms--, 1400 . icn 95.00 1300 1200 K\ i-3.1 1100 1000 900 800 700 600 600 ,Ji|Ljy 400 300 200 100 x-^^, --. -A.,^.-J- ^MMw\^ 0 4-00 4.50 5.00 5.50 6-00 6,50 7.00 tissues procedures Extraction: 0.3 g fat, (spike), dissolve in 6 mL heptane Clean-up: SPE:Si,500mg/10mL (1ST) 1. 1 mL acetone and 2 mL heptane 2. Load heptane extract 3. Wash with 6 mL heptane 4. Elute with 1 mL IPA Extraction: 0.5 g tissue; (spike), add 2 mL water, 15 uL HC104; extract with 6 mL hexane; 15 min vortex; centrifuge Clean-up: SPE:Si,500mg/10mL (1ST) 1. lmLIPAand2mL hexane 2. Load hexane extract 3. Wash with 6 mL hexane 4. Elute with 1 mL IPA Pl Extr 0.25 mL mL water 15 min vo s No C for 8-2 TBA - piaSma^andtissues chromatograms Fat: 190 ng/g spike and blank and tissues results Matrix Fat Liver Kidney Plasma Spike Level 190 ng/g 950 ng/g 100 ng/g 200 ng/g 100 ng/g 100 ng/mL 200 ng/mL 8-2 TBA (% Rec. st.dev) 631 1003 984 805 725 867 11311 C9-iso (% Rec. st.dev) 6710 957 9715 799 7510 8215 10417 Estima 12 6.0 4.0 5.0 Summary 8-2 Telomer B alcohol is^<hallenging analyt because of its volatility and lov\^^ater solubilit - low water solubility dictates the need fCT>n^ developed at LOQ; ^^^ - extraction solvent choice is critical in achieving re sensitivity, precision, and GC/MS system perfor - volatility losses from water are rapid and significa - solvent exchange is not an option, limiting the cho sample concentration or/and clean-up; - samples should be stored frozen; Summary - demonstrated the analytfealprocedures for a of 8-2 Telomer B alcohol in environmental wat soils, rat plasma, and tissues; N^ - extracts derived from complex matrices (sotktfesu require clean-up; \ - maintaining column performance is critical for reli quantitation and maintaining GC/MS sensitivity; - use of internal standards (especially isotopically la critical for accurate quantitation; - use of surrogates is important for accurate quanti biological matrices;