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Physical & Chemical properties

Particle size distribution (Granulometry)

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Reference
Endpoint:
particle size distribution (granulometry)
Type of information:
experimental study
Adequacy of study:
key study
Study period:
from 19th of december 2017 to 16th of january 2018
Reliability:
1 (reliable without restriction)
Rationale for reliability incl. deficiencies:
guideline study
Qualifier:
according to guideline
Guideline:
ISO 13320 (Particle size analysis - Laser diffraction methods)
GLP compliance:
not specified
Other quality assurance:
ISO/IEC 17025 (General requirements for the competence of testing and calibration laboratories)
Type of method:
Laser scattering/diffraction
Type of particle tested:
primary particle
Type of distribution:
volumetric distribution
Specific details on test material used for the study:
SOURCE OF TEST MATERIAL
- Source and lot/batch No.of test material: E/17/68068
Monoxyde tamise -lot 17238-02 + 17240-12
description : Yellowish, granular
Key result
Percentile:
D10
Mean:
602 µm
St. dev.:
272
Key result
Percentile:
D50
Mean:
770 µm
St. dev.:
272
Key result
Percentile:
D90
Mean:
1 370 µm
St. dev.:
272
Conclusions:
The particle size distribution of the substance sample has been determined according to ISO 13320:2009 “Particle size analysis - Laser diffraction methods” and ISO 17025 quality assurance accreditation.
The particle size of the sample as is in the range between 300 and 1700 μm.
The mean value of the distribution is 843.1 μm
The 10%-Fraction is: d10 = 602 μm
The median value is: d50 = 770 μm
The 90%-Fraction is: d90 = 1370 μm

Description of key information

The particle size distribution of the substance sample has been determined according to ISO 13320:2009 “Particle size analysis - Laser diffraction methods” and ISO 17025 quality assurance accreditation.

The particle size of the sample as is in the range between 300 and 1700 μm.

The mean value of the distribution is 843.1 μm

The 10%-Fraction is: d10 = 602 μm

The median value is: d50 = 770 μm

The 90%-Fraction is: d90 = 1370 μm

Additional information