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Please be aware that this old REACH registration data factsheet is no longer maintained; it remains frozen as of 19th May 2023.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

FAT 40147 is a brown powder at 20 °C.

The melting point of FAT 40147 was found to be 153 °C.

No boiling point for FAT 40147/G could be detected, as the thermic decomposition of the test substance started at about 330 °C.

The average density of FAT 40147 was found to be 1.6100 g/cm3.

The median particle size (L50) of FAT 40147 was determined to be 24.682 µm.

The vapor pressure of FAT 40147/G TE has been calculated to be less than 2.4 x 10-5 Pa at 25 °C.

The n-octanol/water partition coefficient of FAT 40147/G was determined to be 0.000864 (log Pow = -3.06).

The water solubility of FAT 40147/G at a temperature of 20 °C was determined to be 296 g/l.

The surface tension of FAT 40147/G was determined to be 66.298 mN/m at room temperature ca 20 °C.

FAT 40147/G is a solid with a high melting point (153 °C). Hence the endpoint (flash point) is waived.

The autoignition temperature of FAT 40147/G was determined to be >550 °C, as no autoignition was observed under test conditions.

FAT 40147/G was considered as not highly flammable.

FAT 40147/G is considered to be non-explosive. The analysis of the chemical structure reveals no alerts for explosive properties. The calculated chemical oxygen balance is above the trigger value of -200, but the determination of the exothermic decomposition energy demonstrated an energy release below the critical value of 500 J/g. Therefore the substance is considered to be non-explosive according to Directive 67/548/EEC and Regulation (EC) 1272/2008 and no further testing are required.

FAT 40147/G is incapable of reacting exothermically with combustible materials on the basis of its chemical structure.