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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

Physical & Chemical properties

Vapour pressure

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Endpoint:
vapour pressure
Type of information:
calculation (if not (Q)SAR)
Adequacy of study:
key study
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
accepted calculation method
Justification for type of information:
Calculation for vapour pressure was performed with software tool MPBPWIN v1.43, accepted estimation program from ECHA Guidelines
Principles of method if other than guideline:
MPBPWIN v1.43; part of: Estimation Programs Interface (EPI) Suite TM
Key result
Temp.:
25 °C
Vapour pressure:
0 Pa
Conclusions:
Calculation for vapour pressure with software tool MPBPWIN v1.43 : 3.1330756E-5 Pa (25 °C)
Endpoint:
vapour pressure
Type of information:
read-across from supporting substance (structural analogue or surrogate)
Adequacy of study:
key study
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
accepted calculation method
Justification for type of information:
Since the test item is a reaction mass of hexadecanoic anhydride and hexadecanoic acid, hexadecanoic anhydride was used for the read-across.
Calculation for vapour pressure was performed with software tool MPBPWIN v1.43, accepted estimation program from ECHA Guidelines
Reason / purpose for cross-reference:
read-across source
Principles of method if other than guideline:
MPBPWIN v1.43; part of: Estimation Programs Interface (EPI) Suite TM
Key result
Temp.:
25 °C
Vapour pressure:
0 Pa
Conclusions:
Calculation for vapour pressure with software tool MPBPWIN v1.43 : 3.1330756E-5 Pa (25 °C)
Endpoint:
vapour pressure
Type of information:
calculation (if not (Q)SAR)
Adequacy of study:
key study
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
accepted calculation method
Justification for type of information:
Calculation for vapour pressure was performed with software tool MPBPWIN v1.43, accepted estimation program from ECHA Guidelines
Principles of method if other than guideline:
MPBPWIN v1.43; part of: Estimation Programs Interface (EPI) Suite TM
Key result
Temp.:
25 °C
Vapour pressure:
0 Pa
Conclusions:
Calculation for vapour pressure with software tool MPBPWIN v1.43 : 5.0662499E-5 Pa (25 °C)
Endpoint:
vapour pressure
Type of information:
read-across from supporting substance (structural analogue or surrogate)
Adequacy of study:
key study
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
accepted calculation method
Justification for type of information:
Since the test item is a reaction mass of hexadecanoic anhydride and hexadecanoic acid, hexadecanoic acid was used for the read-across.
Calculation for vapour pressure was performed with software tool MPBPWIN v1.43, accepted estimation program from ECHA Guidelines
Reason / purpose for cross-reference:
read-across source
Principles of method if other than guideline:
MPBPWIN v1.43; part of: Estimation Programs Interface (EPI) Suite TM
Key result
Temp.:
25 °C
Vapour pressure:
0 Pa
Conclusions:
Calculation for vapour pressure with software tool MPBPWIN v1.43 : 5.0662499E-5 Pa (25 °C)

Description of key information

The vapour pressure of the test item reaction mass of hexadecanoic anhydride and hexadecanoic

acid was calculated based on read-across to hexadecanoic anhydride and hexadecanoic acid.

Calculation for vapour pressure with software tool MPBPWIN v1.43 for hexadecanoic anhydride: 3.1330756E-5 Pa (25 °C)

Calculation for vapour pressure with software tool MPBPWIN v1.43 for hexadecanoic acid: 5.0662499E-5 Pa (25 °C)

The vapour pressure for the test item reaction mass of hexadecanoic anhydride and hexadecanoic acid could be included between these values, therofore circa 4.09966275E-5 Pa (25 °C).

Key value for chemical safety assessment

Vapour pressure:
0 Pa
at the temperature of:
25 °C

Additional information