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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:
Experimental starting and end date: 16 June 2015; Study completion date - 22 July 2015.
Reliability:
1 (reliable without restriction)
Rationale for reliability incl. deficiencies:
guideline study
Qualifier:
according to guideline
Guideline:
other: CIPAC MT 187: Particle Size Analysis by Laser Diffraction
Deviations:
no
Qualifier:
according to guideline
Guideline:
other: ISO 13320-1: Particle Size Analysis – Laser Diffraction Methods
Deviations:
no
GLP compliance:
no
Type of method:
Laser scattering/diffraction
Type of distribution:
mass based distribution
Specific details on test material used for the study:
Identification: FAT 21021/E TE Lot. 72 (Thailand)
Appearance: Red powder
Mass median aerodynamic diameter:
109.377 µm
Percentile:
D10
Mean:
16.54 µm
Remarks on result:
other: L10
Percentile:
D50
Mean:
109.377 µm
Remarks on result:
other: L50
Percentile:
D90
Mean:
450.437 µm
Remarks on result:
other: L90
Conclusions:
The median particle size (L50) of FAT 21021/E was found to be 109.377 μm.
Executive summary:

The purpose of the study was the evaluation of the particle size distribution for the test substance FAT 21021/E, according to the following guidelines

CIPAC MT 187: Particle Size Analysis by Laser Diffraction

ISO 13320-1: Particle Size Analysis – Laser Diffraction Methods

The following results were noted:

L10: 16.540 μm

L50: 109.377 μm

L90: 450.437 μm

Median particle size (L50) of FAT 21021 is found to be 109.377 μm

Description of key information

The median particle size (L50) of FAT 21021/E is found to be 109.377 μm.

Additional information

A study was performed to evaluate the particle size distribution for the test substance FAT 2102110/E, according to the following guidelines

CIPAC MT 187: Particle Size Analysis by Laser Diffraction

ISO 13320-1: Particle Size Analysis – Laser Diffraction Methods

 

L10: 16.540 μm

L50: 109.377 μm

L90: 450.437 μm

Median particle size (L50) of FAT 21021 is found to be 109.377 μm