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Please be aware that this old REACH registration data factsheet is no longer maintained; it remains frozen as of 19th May 2023.

The new ECHA CHEM database has been released by ECHA, and it now contains all REACH registration data. There are more details on the transition of ECHA's published data to ECHA CHEM here.

Diss Factsheets

Administrative data

Endpoint:
phototransformation in air
Type of information:
(Q)SAR
Adequacy of study:
key study
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
other: Calculation method
Justification for type of information:
QSAR prediction: migrated from IUCLID 5.6

Data source

Reference
Reference Type:
other: (Q)SAR
Title:
AopWin v1.92
Author:
Anon
Year:
2008
Bibliographic source:
US Environment Protection Agency

Materials and methods

Test guideline
Deviations:
not applicable
Principles of method if other than guideline:
Calculation method.

Test material

Constituent 1
Chemical structure
Reference substance name:
2,6-di-tert-butylphenol
EC Number:
204-884-0
EC Name:
2,6-di-tert-butylphenol
Cas Number:
128-39-2
Molecular formula:
C14H22O
IUPAC Name:
2,6-di-tert-butylphenol

Results and discussion

Dissipation half-life of parent compound
DT50:
0.22 d
Test condition:
(Q)SAR: OH Rate Constant = 49.1082 E-12 cm3/molecule-sec
Transformation products:
not specified

Applicant's summary and conclusion

Validity criteria fulfilled:
yes
Conclusions:
  Half-Life =    0.218 Days (12-hr day; 1.5E6 OH/cm3)
Executive summary:

Output from AopWin Version 1.92:-

Atmospheric Oxidation (25 deg C) [AopWin v1.92]:

  Hydroxyl Radicals Reaction:

     OVERALL OH Rate Constant = 49.1082 E-12 cm3/molecule-sec

     Half-Life =    0.218 Days (12-hr day; 1.5E6 OH/cm3)

     Half-Life =    2.614 Hrs

  Ozone Reaction:

     No Ozone Reaction Estimation

  Reaction With Nitrate Radicals May Be Important!

  Fraction sorbed to airborne particulates (phi):

     0.000124 (Junge-Pankow, Mackay avg)

     0.0106 (Koa method)

   Note: the sorbed fraction may be resistant to atmospheric oxidation