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Please be aware that this old REACH registration data factsheet is no longer maintained; it remains frozen as of 19th May 2023.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:
water solubility
Type of information:
experimental study
Adequacy of study:
key study
Study period:
2015-05-27 to 2015-08-14
Reliability:
1 (reliable without restriction)
Rationale for reliability incl. deficiencies:
other: Modern study conducted to GLP standards and an approved EU guideline.

Data source

Reference
Reference Type:
study report
Title:
Unnamed
Year:
2015
Report date:
2015

Materials and methods

Test guideline
Qualifier:
according to guideline
Guideline:
EU Method A.6 (Water Solubility)
GLP compliance:
yes (incl. QA statement)
Type of method:
flask method

Test material

Constituent 1
Chemical structure
Reference substance name:
Ammonium 4-isopropylbenzenesulfonate
EC Number:
811-484-5
Cas Number:
680972-33-2
Molecular formula:
C9H15NO3S
IUPAC Name:
Ammonium 4-isopropylbenzenesulfonate
Test material form:
solid: particulate/powder
Details on test material:
- Name of test material (as cited in study report): Ammonium Cumene Sulphonate
- Physical state: White powder
- Analytical purity: 60-100%
- Lot/batch No.: MIW0031014

Results and discussion

Water solubility
Water solubility:
> 1 000 g/L
Temp.:
20 °C
pH:
> 6 - < 8

Any other information on results incl. tables

Preliminary Estimation Results

Mass of sample (mg)

Volume of water in which sample dissolves (ml)

Estimated solubility (g/l)

Analysis method

1000

0.5

> 1000

Flask

Applicant's summary and conclusion

Conclusions:
Interpretation of results: soluble (1000-10000 mg/L)
The estimated solubility of the test material is > 1000 g/l.
Executive summary:

The water solubility has been determined using the flask method in line with EU method A.6. The water solubility is estimated to be > 1000 g/l.