Registration Dossier

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Please be aware that this old REACH registration data factsheet is no longer maintained; it remains frozen as of 19th May 2023.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:
Henry's law constant
Type of information:
(Q)SAR
Adequacy of study:
other information
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
other: calculation based on estimated water solubility

Data source

Reference
Reference Type:
study report
Title:
Unnamed
Year:
2010
Report date:
2010

Materials and methods

Test guideline
Qualifier:
no guideline required
Principles of method if other than guideline:
Calculation based on water solubility and vapour pressure
GLP compliance:
no

Test material

Constituent 1
Chemical structure
Reference substance name:
4,4'-Isopropylidenediphenol, oligomeric reaction products with 1-chloro-2,3-epoxypropane, esters with acrylic acid
EC Number:
500-130-2
EC Name:
4,4'-Isopropylidenediphenol, oligomeric reaction products with 1-chloro-2,3-epoxypropane, esters with acrylic acid
Cas Number:
55818-57-0
Molecular formula:
Not applicable (UVCB substance)
IUPAC Name:
Reaction product of (4,4'-Isopropylidenediphenol, oligomeric reaction products with 1-chloro-2,3-epoxypropane) and 2-propenoic acid

Results and discussion

Henry's Law constant H
H:
< 0 Pa m³/mol
Temp.:
20 °C
Atm. press.:
1 atm

Any other information on results incl. tables

The Henry's constant is calculated on the following assumptions:

Solubility in water= ca. 1 mg/L (as the solubility is depending upon the loading)

Vapour pressure is less than 10 -6 hPa at 20°C

The theoritical molecular weight is 512 g/mol

Applicant's summary and conclusion

Conclusions:
The Henry's constant of the substance is estimated at less than 0.00000512 Pa m³/mol
Executive summary:

The Henry's constant of the substance is estimated at less than 0.00000512 Pa m³/mol .