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Physical & Chemical properties

Viscosity

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Administrative data

Link to relevant study record(s)

Reference
Endpoint:
viscosity
Type of information:
experimental study
Adequacy of study:
key study
Study period:
03/07/2014 - 03/07/2014
Reliability:
1 (reliable without restriction)
Rationale for reliability incl. deficiencies:
guideline study
Justification for type of information:
Data is from experimental study report
Qualifier:
according to guideline
Guideline:
OECD Test Guideline 114 (Viscosity of Liquids)
Principles of method if other than guideline:
The viscosity determination of test substance styrenated phenol (CAS No. 61788-44-1) was done as per the test guideline OECD 114 using Redwood Viscometer No. 1
GLP compliance:
no
Type of method:
other: Redwood viscometer
Specific details on test material used for the study:
- Name of test material: Phenol styrenated
- Molecular weight: 1011.3956 g/mol
- Smiles notation: OC1=C(C=C)C=C(C=C)C=C1
- InChl: InChI=1/C10H10O/c1-3-8-5-6-10(11)9(4-2)7-8/h3-7,11H,1-2H2
- Substance type: organic
- Physical state: Liquid
Key result
Temp.:
other: 50 degree C
Parameter:
kinematic viscosity (in mm²/s)
Value:
481.403
Remarks on result:
other: No other detail available
Key result
Temp.:
other: 70 degree C
Parameter:
kinematic viscosity (in mm²/s)
Value:
163.26
Remarks on result:
other: No other detail available
Key result
Temp.:
other: 50 degree C
Parameter:
dynamic viscosity (in mPa s)
Value:
515.1
Remarks on result:
other: No other detail available
Key result
Temp.:
other: 70
Parameter:
dynamic viscosity (in mPa s)
Value:
174.6
Remarks on result:
other: No other detail available

Details

Readings

Remarks

Guideline

OECD - 114

 

Deviation from the Guideline:

The viscosity measurement was done at 50 °C and 70 °C instead of test temperatures 20 °C and 40 °C mentioned in the guideline. This is due to the fact that the maximum measurement limit of Redwood Viscometer No. 1 is 2000 Seconds only which could not be obtained at lower temperatures.

Method of measurement

Redwood Viscometer No. -1

 

Principle of method

Measurement of resistance to flow using RedwoodViscometer No. 1

 

Temperature at which the testing is done

50 °C and 70 °C

 

 

 

Observations

Time taken to fill 50ml flask at50 °C in ‘Sec’ (Mean Value)

1949.5 sec

Time taken to fill 50ml at 70 °C flask in ‘Sec’ (Mean Value)

661 sec

Density of fluid in gm/cc

1.07 g/cc

Conclusions:
Kinematic viscosity (experimental) of Styrenated Phenol at 50 0C and 70 0C is 481.403 mm2/sec and 163.26 mm2/s respectively.
Dynamic viscosity (calculated) of Styrenated Phenol at 50 0C and 70 0C is 515.1 mPa.S and 174.6mPa.S, respectively.
Executive summary:

The viscosity determination of test substance styrenated phenol (CAS No. 61788-44-1) was done as per the test guideline OECD 114 using Redwood Viscometer No. 1.Kinematic viscosity (experimental) of test substance at 500C and 700C is 481.403 mm2/sec and 163.26 mm2/s respectively. Dynamic viscosity (calculated) of test substance at 500C and 700C is 515.1mPa.S and 174.6mPa.S, respectively.

Description of key information

The viscosity determination of test substance styrenated phenol (CAS No. 61788-44-1) was done as per the test guideline OECD 114 using Redwood Viscometer No. 1.Kinematic viscosity (experimental) of test substance at 500C and 700C is 481.403 mm2/sec and 163.26 mm2/s respectively. Dynamic viscosity (calculated) of test substance at 500C and 700C is 515.1mPa.S and 174.6mPa.S, respectively.

Key value for chemical safety assessment

Viscosity:
515.1 mPa · s (dynamic)
at the temperature of:
50 °C

Additional information

The viscosity determination of test substance styrenated phenol (CAS No. 61788-44-1) was done as per the test guideline OECD 114 using Redwood Viscometer No. 1.Kinematic viscosity (experimental) of test substance at 500C and 700C is 481.403 mm2/sec and 163.26mm2/s respectively. Dynamic viscosity (calculated) of test substance at 500C and 700C is 515.1mPa.S and 174.6mPa.S, respectively.

From other experimental report, the dynamic viscosity of Phenol, styrenated was determine to be 987.36 mPa s at 28 degC.