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Administrative data

Endpoint:
auto-ignition temperature (liquids)
Type of information:
experimental study
Adequacy of study:
key study
Study period:
September 05, 2016 to September 14, 2016
Reliability:
1 (reliable without restriction)
Rationale for reliability incl. deficiencies:
guideline study

Data source

Reference
Reference Type:
study report
Title:
Unnamed
Year:
2016
Report date:
2016

Materials and methods

Test guideline
Qualifier:
according to guideline
Guideline:
DIN 51794 (Testing of mineral oil hydrocarbons - Determination of ignition temperature)
GLP compliance:
yes (incl. QA statement)

Test material

Constituent 1
Chemical structure
Reference substance name:
(Z)-hex-3-enyl isobutyrate
EC Number:
255-424-0
EC Name:
(Z)-hex-3-enyl isobutyrate
Cas Number:
41519-23-7
Molecular formula:
C10H18O2
IUPAC Name:
(Z)-hex-3-enyl isobutyrate
Specific details on test material used for the study:
TEST MATERIAL
Name ( stated on the report) : Hexenyl-3-cis Isobutyrate
Appearance: Colourless to pale yellow liquid
Batch: VE00450298
Expiry date: July 15, 2017

Results and discussion

Auto-ignition temperature (liquids / gases)
Key result
Auto-ignition temperature:
290 °C
Atm. press.:
1 013 hPa

Applicant's summary and conclusion

Conclusions:
The lowest temperature giving a positive effect was 294°C. The injected volume was 100 µl, the ignition delay was 23 s. At a temperature of 289°C no ignition was observed.
Therefore, after rounding-off to the next-lower multiple of 5°C:
Auto-ignition temperature of Hexenyl-3-cis Isobutyrate: 290±10°C
Executive summary:

The Auto-ignition temperature of Hexenyl-3-cis Isobutyrate was determined in a SUR BERLIN oven, equipped with a 250 ml glass ignition vessel according to the DIN 51794. The lowest temperature giving a positive effect was 294°C. The injected volume was 100µl, the ignition delay was 23 s. At a temperature of 289°C no ignition was observed.

Therefore, after rounding-off to the next-lower multiple of 5°C:

 Auto-ignition temperature of Hexenyl-3-cis Isobutyrate: 290±10°C