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Diss Factsheets

Physical & Chemical properties

Vapour pressure

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Administrative data

Link to relevant study record(s)

Reference
Endpoint:
vapour pressure
Type of information:
(Q)SAR
Adequacy of study:
key study
Study period:
2017-09-05
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
results derived from a valid (Q)SAR model and falling into its applicability domain, with adequate and reliable documentation / justification
Justification for type of information:
1. SOFTWARE
EPIWIN v4.1

2. MODEL (incl. version number)
MPBPWIN v1.43

3. SMILES OR OTHER IDENTIFIERS USED AS INPUT FOR THE MODEL
CC(=CC(=O)C)O[V](OC(=CC(=O)C)C)OC(=CC(=O)C)C

4. SCIENTIFIC VALIDITY OF THE (Q)SAR MODEL
please refer to attached QMRF

5. APPLICABILITY DOMAIN
please refer to attached QPRF
Guideline:
other: ECHA Guidance R.6
Principles of method if other than guideline:
- Software tool(s) used including version: EPIWIN v4.1
- Model(s) used: MPBPWIN v1.43
- Model description: see field 'Attached justification'
- Justification of QSAR prediction: see fiel 'Attached justification'
Specific details on test material used for the study:
CC(=CC(=O)C)O[V](OC(=CC(=O)C)C)OC(=CC(=O)C)C
Key result
Temp.:
25 °C
Vapour pressure:
0 Pa
Temp.:
25 °C
Vapour pressure:
0 mm Hg
Conclusions:
The vapour pressure was predicted to be 2.49E-9 mm Hg (3.33 E-7 Pa) (Modified Grain Method).
Executive summary:

Vapour pressure of vanadium-tris-acetylacetonate was predicted with the model MPBPWIN v1.43 implemented in EPIWIN v4.1. The vapour pressure was predicted to be 2.49E-9 mm Hg (3.33 E-7 Pa) (Modified Grain Method).

Description of key information

Vapour pressure of vanadium-tris-acetylacetonate was predicted with the model MPBPWIN v1.43 implemented in EPIWIN v4.1. The vapour pressure was predicted to be 2.49E-9 mm Hg (3.33 E-7 Pa) (Modified Grain Method).

Key value for chemical safety assessment

Vapour pressure:
0 Pa

Additional information