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Diss Factsheets

Physical & Chemical properties

Density

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Reference
Endpoint:
relative density
Remarks:
density
Type of information:
experimental study
Adequacy of study:
key study
Study period:
November 2009
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
comparable to guideline study
Qualifier:
equivalent or similar to guideline
Guideline:
other: DIN 51757 / ASTM D 4052
GLP compliance:
no
Other quality assurance:
other: The laboratory complied with a quality management system according to DIN EN ISO 9001 : 2008
Type of method:
oscillating densitimeter
Remarks:
Anton Paar DMA 4500
Dynamic viscosity of test material:
2.295 mPa s at 20°C
Type:
density
Density:
828.3 kg/m³
Temp.:
20 °C
Key result
Type:
relative density
Density:
0.828 other: dimensionless
Temp.:
20 °C
Remarks on result:
other: the relative density D20/4 is dimensionless

Result first measurement (20°C): 0.8283 g/cm³

Result second measurement (20°C): 0.8283 g/cm³

 

==> Density D420(test item) = 0.8283 (mean value)

Conclusions:
Density (DIN 51757) = 0.8283 g/cm³ at 20°C
Executive summary:

Applying an oscillating densitimeter (DIN 51757), the density was measured with the following result: 0.8283 g/cm³ at 20°C, equalling a relative density D420(test item) of 0.8283. The laboratory complied with a quality management system according to DIN EN ISO 9001 : 2008

Description of key information

Density (DIN 51757 / ASTM D 4052; OXEA, 2009): 828.3 kg/m3 at 20°C

Key value for chemical safety assessment

Relative density at 20C:
0.828

Additional information

Applying an oscillating densitimeter (DIN 51757), the density was measured with the following result: 0.8283 g/cm³ at 20°C, equalling a relative density D420(test item) of 0.8283. The laboratory complied with a quality management system according to DIN EN ISO 9001 : 2008 (Oxea, 2009).

This result is confirmed by valid results from a supporting study obtained via the same technique (oscillating densitimeter) according to OECD 109:

relative density D420(test item) = 0.830 ± 0.001 (Givaudan, 2011)