Ethyl [(4-chloro-1,2,3-benzothiadiazol-5-yl)oxy]acetate
O=C(OCC)COc2ccc1snnc1c2Cl CopyCopied
InChI=1S/C10H9ClN2O3S/c1-2-15-8(14)5-16-6-3-4-7-10(9(6)11)12-13-17-7/h3-4H,2,5H2,1H3 CopyCopied
BZMYNQUTKITCAA-UHFFFAOYSA-N CopyCopied
Validated by Experts, Validated by Users, Non-Validated, Removed by Users, Redirected by Users, Redirect Approved by Experts
29123-12-4 [RN]
4-Chloro-5-carboxymethoxybenzo-2,1,3-thiadiazole ethyl ester
BRN 1000507 [DBID]
Predicted data is generated using the ACD/Labs’ ACD/PhysChem Suite, for more information see their website.
Predicted data is generated using the US Environmental Protection Agency’s EPISuite, for more information see their website.
Log Octanol-Water Partition Coef (SRC): Log Kow (KOWWIN v1.67 estimate) = 2.11 Boiling Pt, Melting Pt, Vapor Pressure Estimations (MPBPWIN v1.42): Boiling Pt (deg C): 403.68 (Adapted Stein & Brown method) Melting Pt (deg C): 163.88 (Mean or Weighted MP) VP(mm Hg,25 deg C): 2.52E-007 (Modified Grain method) Subcooled liquid VP: 6.77E-006 mm Hg (25 deg C, Mod-Grain method) Water Solubility Estimate from Log Kow (WSKOW v1.41): Water Solubility at 25 deg C (mg/L): 280.5 log Kow used: 2.11 (estimated) no-melting pt equation used Water Sol Estimate from Fragments: Wat Sol (v1.01 est) = 333.18 mg/L ECOSAR Class Program (ECOSAR v0.99h): Class(es) found: Esters Henrys Law Constant (25 deg C) [HENRYWIN v3.10]: Bond Method : 1.67E-009 atm-m3/mole Group Method: Incomplete Henrys LC [VP/WSol estimate using EPI values]: 3.224E-010 atm-m3/mole Log Octanol-Air Partition Coefficient (25 deg C) [KOAWIN v1.10]: Log Kow used: 2.11 (KowWin est) Log Kaw used: -7.166 (HenryWin est) Log Koa (KOAWIN v1.10 estimate): 9.276 Log Koa (experimental database): None Probability of Rapid Biodegradation (BIOWIN v4.10): Biowin1 (Linear Model) : 0.7414 Biowin2 (Non-Linear Model) : 0.9692 Expert Survey Biodegradation Results: Biowin3 (Ultimate Survey Model): 2.4720 (weeks-months) Biowin4 (Primary Survey Model) : 3.5950 (days-weeks ) MITI Biodegradation Probability: Biowin5 (MITI Linear Model) : 0.5617 Biowin6 (MITI Non-Linear Model): 0.3366 Anaerobic Biodegradation Probability: Biowin7 (Anaerobic Linear Model): 0.5652 Ready Biodegradability Prediction: NO Hydrocarbon Biodegradation (BioHCwin v1.01): Structure incompatible with current estimation method! Sorption to aerosols (25 Dec C)[AEROWIN v1.00]: Vapor pressure (liquid/subcooled): 0.000903 Pa (6.77E-006 mm Hg) Log Koa (Koawin est ): 9.276 Kp (particle/gas partition coef. (m3/ug)): Mackay model : 0.00332 Octanol/air (Koa) model: 0.000463 Fraction sorbed to airborne particulates (phi): Junge-Pankow model : 0.107 Mackay model : 0.21 Octanol/air (Koa) model: 0.0358 Atmospheric Oxidation (25 deg C) [AopWin v1.92]: Hydroxyl Radicals Reaction: OVERALL OH Rate Constant = 13.2263 E-12 cm3/molecule-sec Half-Life = 0.809 Days (12-hr day; 1.5E6 OH/cm3) Half-Life = 9.704 Hrs Ozone Reaction: No Ozone Reaction Estimation Fraction sorbed to airborne particulates (phi): 0.159 (Junge,Mackay) Note: the sorbed fraction may be resistant to atmospheric oxidation Soil Adsorption Coefficient (PCKOCWIN v1.66): Koc : 119.4 Log Koc: 2.077 Aqueous Base/Acid-Catalyzed Hydrolysis (25 deg C) [HYDROWIN v1.67]: Total Kb for pH > 8 at 25 deg C : 4.205E+000 L/mol-sec Kb Half-Life at pH 8: 1.908 days Kb Half-Life at pH 7: 19.076 days Bioaccumulation Estimates from Log Kow (BCFWIN v2.17): Log BCF from regression-based method = 0.922 (BCF = 8.347) log Kow used: 2.11 (estimated) Volatilization from Water: Henry LC: 1.67E-009 atm-m3/mole (estimated by Bond SAR Method) Half-Life from Model River: 5.79E+005 hours (2.412E+004 days) Half-Life from Model Lake : 6.316E+006 hours (2.632E+005 days) Removal In Wastewater Treatment: Total removal: 2.36 percent Total biodegradation: 0.10 percent Total sludge adsorption: 2.26 percent Total to Air: 0.00 percent (using 10000 hr Bio P,A,S) Level III Fugacity Model: Mass Amount Half-Life Emissions (percent) (hr) (kg/hr) Air 0.0174 19.4 1000 Water 21.3 900 1000 Soil 78.6 1.8e+003 1000 Sediment 0.0942 8.1e+003 0 Persistence Time: 1.45e+003 hr
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