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Please be aware that this old REACH registration data factsheet is no longer maintained; it remains frozen as of 19th May 2023.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

Physical & Chemical properties

Endpoint summary

Administrative data

Description of key information

Additional information

The substance is a colourless turbid liquid at room temperature, the substance should be stored at room tempearture and in the dark. No guideline was required for these sets of studies.

Melting Point: The Pour point was determined according to EU Method A1, and produced a result of 256 +/- 3 K

Boiling Temperature: Decomposed from approximately 412 ± 0.5 K at 101.35 kPa, by differential scanning calorimetry, using ASTM E537-86, Method A2 of Commission Directive 92/69/EEC. As the test material decomposed, no value for boiling temperature could be determined. A calculated value of boiling temperature gave a result of 582 K at 101.325 kPa (MPBPWIN version 1.41, © 2000 U. S. Environmental Protection Agency).

Relative density: Relative Density was determined using the pycnometer method, Method A3 of Commission Directive 92/69/EEC.

The relative density of the test material has been determined to be 1.23 at 20.0 ± 0.5°C.

Granulometry: The study is not feasible as the substance is a liquid, therefore the particle size distribution can not be determined.

Vapour Pressure: The vapour pressure was determined using the EU Method A4 (vapour pressure).The vapour pressure of the test material has been calculated to be less than 5.3 x 10-3Pa at 25°C.

Partition Coefficient: The partition coefficient was determined using the shake-flask method, Method A8 of Commission Directive 92/69/EEC.

The partition coefficient of the test material has been determined to be 1.79 at 21.4 ± 0.5°C, log10 Pow 0.254.

Water Solubility: Water Solubility of 162 g/l of solution at 20.0 ± 0.5°C, was determined using the flask method, Method A6 of Commission Directive 92/69/EEC.

Surface Tension: Surface Tension of 66.5 mN/m (1.06 g/l solution) at 21.0 ± 0.5°C, was detrmined using a ring method based on ISO 304, Method A5 of Commission Directive 92/69/EEC. The test material is considered not to be a surface-active material.

Flash point: The flash point was determined using Method A9, specified in Commission Directive 92/69/EEC (which constitutes Annex V of Council Directive 67/548/EEC). The flash point of the test material has been determined to be 172 ± 2°C.

Auto-Flammability: Testing was conducted using Method A15 of Commission Directive 92/69/EEC (which constitutes Annex V of Council Directive 67/548/EEC).

The test material has been determined to have an auto-ignition temperature of 388 ± 5 °C.

Flammability: Flammability is usually conducted for solid materials. As the test material is a liquid material the flash-point has instead been conducted (see sction 4.11).

Explosiveness: Based on the chemical structure of the test material the result for the explosive properties has been predicted negative using EU Method A21.

Oxidizing Properties: Based on the chemical structure the result for the oxidising properties has been predicted negative.