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Cliarig Ih ta PhoP, prtax Corporation, f USA US00002747 ju ry 2 S ; n m . .SFACIANTS US00002748 DC-10 (Caafhieafd Fl, SCB| Crash A w al I,AM fCiardi f :1S?S| Aff F (Light wafer} me: lea Fees saved oaf of IMQ . SURFACTANTS US00002749 Engine Fir#, Flay EE 201 KAL FL 27uir 16 LLb b I /71S neopfe on Loarcl . .SFACIANTS US00002750 E n g lu e R n s , J u n e 2 ? , 201.8 H. $Q3dSf233 passenger/39 c^w ad safalv evacuated . .SFACIANTS US00002751 4 US00002752 The Fire Triangle . SURFACTANTS US00002753 The mechanism of film formation on a fuel surface by aqueous film-forming foams - from "Principles of Fire Protection Chemistry" (1976) by Richard L. Tuve i. angrnuir- oriented . U5 FACTAMTS US00002754 Expansion Ratio l 2 Density (g/cc) 1 (Solution) 0.50 %Air (by volume) 0 50% 4 0.25 75% 6 0.17 83% 8 0.13 88% 10 0.10 90% 12 0.08 92% 14 0.07 93% 16 0.06 94% 20 0.05 95% ' Crirical Point: air bubbles are completely spherical and they touch each other at one point. Foam Class Low Expansion Foam Medium Expansion Foam High Expansion Foam Expansion Ratio* 2 - <20 20-200 >200 * Expansion ratio =Volume of foam generated/Volume of liquid used Density of Hydrocarbon Fuels (@25-'C): Octane: 0.70; Heptane: 0.68; Gasoline: 0.73 . SURFACTANTS US00002755 Average bubble thickness: 0.05-0.1mm (50-1OOp) 1 '/ Foam solution (A FFF, FP, P, etc.) Exp. Ratio: 6-10 > Average bubble diameter: ~0.5 mm (500p) ( St~\{IhI e**. f 1 ii fv>~, d**, *i*lv"l i<l*ly I11I*J* li>J-s l1f" es"* \I I I V#' I i i I i i ^w# 1W I Iw# i w * # Reference: FOAMSPEX: Large Scale Foam Application - Modeling of Foam Spread and Extinguishment, SP Report 2001:13 2. 226 P. f>i; - 4 Y / f (LaPlace eq.) P,: pressure inside P0: pressure outside T: surface tension r: radius of bubble i l Jii>toeveiiaE1 blib\ (Restoring force) Elastici tv - b A ftlT /d A i eoc: T FLOOR OS US FACI ANTS US00002756 Reference: Arnaud Saint-Jalmes, "Physical chemistry in foam drainage and coarsening," Soft Matter, 2006, 2, 836-849 iMatt'mt Borilrr Oiin Films Drainage occurs through Plateau borders and nodes by gravity end cepHloro force. SURFACTANTS US00002757 Air (or oil A -V 3. X -i, A ,,!. vt . .'V Water w ;-r h V Micelle ; A A-' 'O'Na1 fi i.H, ' !!; !:, H. r:, li2 H-. / f: X -... / fi \i.,.A fi"X' ...XC\ ,t.;X f'i'\ A fi X ,!..,/ 0\ ,,i.X H, H: H-, H; Hj H: H; URFAC1ANTS US00002758 SURFACTANTS US00002759 Sodium Octy? Sulfate (Anionic surfactant) Oleophilic (oil loving) hydrocarbon "tail" Hydrophilic "head" group Heptane (hydrocarbon fuel) Cocamidopropy; Betaines and Hydroxy Suitsines (Amphoteric surfactants) lauryl Poiyglycosides (Nonionic surfactant) . .SFACINTS US00002760 SLripCitO ji.Y; 20 - 12, l l Oleophobic (oil/fuel repellent) fluorinated "tail" Hydrophilic "head" group FF FF F 'V'S m m m m m | # ig |ig S w F FF FF C6 (6:2) Fluorotelomer surfactant ; Currently available: ; C6 Purity: >99% i PFOA: trace (ppb levels) ; PFOA precursors: trace (ppb levels) ; PFOS: None versus F p pp F p f p f F FF F O s< w FFFFFFFF OH PFOS (C8) PFOA (C7)("C8") "Teflon" Polymer (Repeating units) . SURFACTANTS US00002761 Fayfar c o m p o n e n t s n AFFFl FEuoiosyiiactants it Hyclrocaffeoa s u r f a c t a n t s (other components: solvents, water, etc.) Their inherent _ - -a ^ ^a/a^iy ha-init provides fuel repellency to foam. Their a t n n a k e it possible for the foam solution (16 -18 dyne/cm) to spread spontaneously on hydrocarbon fuel (Ss/F > 0 ) Impa rt fia a ijis is ia rita to foa m. Hydrocarbon Surfactants: Used mainly as a foaming agent. (Remember pure liquids don't foam!) Inherent oleophilicitv (oil/fuel loving) leads to easy fuel contamination of foam. Provides low interfacial tension between foam solution and fuel to meet the positive spreading conditions. . SURFACTANTS US00002762 ,^ 4 (W.D. Harkin (1922)) [A measure of the driving force for one liquid to spontaneously spread across another.) > S ; Liquid 2 spreads spontaneously on liquid I; ,* Liquid I spreads spontaneously on liquid 2 Example: AFFFfoam sohdfon (d-H ,0} spontaneously spreads on the surface of cyclohexane (d-0,78} forming a duplex fdw dld-dOp thick). AFFF F3 (RF6) 24 24 16.4 4.3 26.4 2.4 +4.3 -11.9 -4.8 0 Surface tension unit: dyne/cm *Reference: Bogdan Z. Dlugogorski, Ted H. Schaefer and Eric M. Kennedy, "Perform ance o f Replacem ents fo r Fluorine-containing A FFF/' 3 rd Reebok Foam Sem inar (2007) . SURFACTANTS US00002763 Attract! Heptane Fluorine-free Poem Bobble AFFF Foam Bubble , \U /, 'tvC ni ,i < * Air ' V \ . `HTiA#i -AVir " Hydrocarbon Surfactant (Hydrocarbon tails; Oleophilic} |'V W ' Fluorosurfactant{Fluorocarbontails: Oleophobic) Repel! Heptane :Ik---:-kJ;--ikM:ksik'kk-lLk-jkk'k''''n':'w' t'is,'' . SURFACTANTS US00002764 www.voutube.com : "Flammable Firefighting Foams" FLUOR O S U5 FA CI AN T5 US00002765 AF FF Foam FLUOR O S U5 FA CI AN T5 US00002766 f3 fo a m FLUOR O S UR FA C AN & US00002767 Test Foam Agent Flammability and Sustained Burning Iso-Octane Gasoline n-Heptane Cyclohexane Product A (6%) Product B (3%/6%) Product C (3%) Product D (3%/3%) Product E (3%/6%) All ignited and burned away Product 1 (AFFF-3%) Product 2-AR-AFFF-3%/3% Product 3-AR-AFFF-3%/3% Product 4-AR-AFFF-l%/3% None ignited or burned at all Note: Due to its high (>38C) flash point, Jet A1 -contaminated foams could not be ignited at ambient temperature. Reference: Chang Jho, International Fire Fighter, 41, Issue 36 (2012) . iUSFACIAMTS US00002768 Test F3 Foam Produc 1 (3% AFFF Base) Base + DX1025* (0.035%F in concentrate) Base + DX1025 (0.042%F in concentrate) %F from DX1025 None 0.035 F la m m a b ility (Cyclohexane) Flash/Sustained Burning? Yes/Yes Yes/ Product B (3%/6% AR Product) Product B + DX1025 (0.42%F in concentrate) Product B + DX1025 (0.60%F in concentrate) Product B + Dxl025 (0.65%F in concentrate) None 0.42 0.60 Yes/Yes Yes/Yes Yes/Yes j C j j.. Ti. Product F (3%/6% AR Product) None Product F + DX1025 (0.50%F in concentrate) 0.50 Product F + DX1025 (0.60%F in concentrate) 0.60 Product F + DX1025 (0.65%F in concentrate) *0X1025: All C6 (>99%) Fluorotelomer surfactant from Dynax Yes/Yes Yes/Yes Yes/yes . SURFACTANTS US00002769 Test Foam Agent 50% Foam Collapse Tim e (m in) Iso-Octane | G asoline 1 n-H eptane Cyclohexane Product A (6%) Product B (3%/6%) Product C (3%) Product D (3%/3%) Product E (3%/6%) >30 4.6 13.4 >30 9.5 7.1 >30 4.5 23.0 12.8 5.5 3.7 14.1 6.7 9.3 9.5 6.3 8.7 7.4 8.7 Product 1 (AFFF-3%) Product 2 (AR-AFFF-3%/3%) Product 3 (AR-AFFF-3%/3%) Product 4 (AR-AFFF-1%/3%) >30 JetA l >30 >30 >30 >30 20 Reference: Chang Jho, International Fire Fighter, 41, Issue 36 (2012) . SURFACTANTS US00002770 . SURFACTANTS US00002771 Test Foam Agent G asoline Foam Solution over Fuel n-H eptane Iso-Octane* Cyclohexane Product A (6%) Product B (3%/6%) Product C (3%) Product D (3%/3%) Product E (3%/6%) None of the foam solutions spread or sealed (All burned) Product 1 (AFFF-3%) Product 2 (AR-AFFF-3%/3%) All foam solutions spread and sealed Product 3 (AR-AFFF-3%/3%) (No burning) Product 4 (AR-AFFF-1%/3%) ^Spreading on Iso-Octane was hard to detect, but sealing was confirmed by no burning. F3 Foam Solution R e fe re n ce : Chang Jho, international Fire Fighter, 41, Issue 36 (2012) . SURFACTANTS US00002772 Test Foam Agent ! Iso-O ctan e Fuel over Foam Solution G asoline n-H eptane C ycloh exan e Jet A l Product A (6%) Product B (3%/6%) Product C (3%) Product D (3%/3%) Product E (3%/6%) Spreading (30%)* Spreading ( ) Spreading (40%) Spreading (80%) Spreading (20%) Spreading ( ) Spreading (40%) Spreading (80%) Spreading (20%) Spreading (80%) Spreading (40%) Spreading (20%) Spreading (20%) Spreading (20%) Spreading (15%) Spreading (20%) Spreading (20%) Spreading (15%) Spreading (20%) Spreading (20%) Spreading (15%) Spreading (15%) Spreading (15%) 3 ! l& Product 1 (AFFF-3%) Product 2 (AR-AFFF-3%/3%) Product 3 (AR-AFFF-3%/3%) Product 4 (AR-AFFF-1%/3%) * Numbers in parentheses Indicate % spread area. None of the fuels spread over foam solution R e fe re n ce : Chang Jho, International Fire Fighter, 41, Issue 36 (2012) . .SFACIN TS US00002773 t" t- rj em t" f*i 50' <' H ) LL, U_ .11. u_ u . u. b_ ft. Of DC f E U_ IL AVGAS and heptane *Foam Sealability Test (Annex A): Pan: 59.5 cm dia/10.2 cm depth w/conical bottom Fuel: Avgas Conclusion : "...b es t-perform ing FfreeF formulation (RF6) provided about 30% o f the durability o f an AFFF fo r protection against evaporation of low-flashpoint flam m able liguids." Reference: Bogdan Z. Dlugogorski, Ted H. Schaefer and Eric M. Kennedy, "Perform ance o f Replacem ents fo r Fluorine-containing AFFF," 3rd R eeb ck Foam Sem inar (2007) & Fire Technology, 44(3), 297-309 (2008) . SURFACTANTS US00002774 m AFFF IMnction AFFF had:a wuich la tte r foam lifetime than fluorine-free, RF6, when exposed In fieptane^ ftaBrliiatisfi apprafs'lip isd iic s dl^jraitatioit * The presence of fuel effluences lis g i degradation w iih ifffoam lifetim e changing Ir a n ewer an hour o n water to j rojnates on n-tieplaiie:, dqgradsion sew : during extinction may be aed: by fuel and: not poof temperature ' '1F6 degradation tim e scale relevant to extinction tim e scales (1-2 m iddles!, could be rilncling eainctiiJii perfunm itE * Reference: Katherine Hinnant, Ramagopal Ananth, Michael Conroy, and Bradley Williams, "Evaluating the Difference In Foam Degradation betw een Fluorinated and Fluorine-free foam s fo r Im proved Pool Fire Suppression," ARL-TARDEC Fire Protection Information Exchange M eeting, Aberdeen Proving Ground, MD, October 14, 2015 . SURFACTANTS US00002775 ;ili^ E ll^ Heat resistance of foam *Fundamentai differences between AfTF end F3 teems .SFACIAN TS US00002776 is P ly o r fn e^ fr s a ' a ..... -L "H . ________________________________________________________________________________ __________________ ____ .o } 'y o ro te lo n n e r s u r f a c t a n t " ' ......................................................................... ' P? . .SFACIAN TS US00002777 Dynirii Contact Info; Chang Jho, 79 Westchester Avenue, PO Sox 285, Pound Ridge, ?4Y 19576 USA Tap 514 T64-5202 T-m: 314 *764-0533 a-rnail; cha?g.Jh-o@dynaxcorp.com US00002778