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Physical & Chemical properties

Partition coefficient

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Reference
Endpoint:
partition coefficient
Type of information:
experimental study
Adequacy of study:
key study
Study period:
11 July 2009 to 30 September 2009
Reliability:
2 (reliable with restrictions)
Rationale for reliability incl. deficiencies:
guideline study
Qualifier:
according to guideline
Guideline:
other: Guidelines for testing of chemicals" No.107,State Environmental Protection Administration(SEPA), China
Deviations:
no
Qualifier:
equivalent or similar to guideline
Guideline:
OECD Guideline 107 (Partition Coefficient (n-octanol / water), Shake Flask Method)
GLP compliance:
yes
Type of method:
flask method
Partition coefficient type:
octanol-water
Analytical method:
high-performance liquid chromatography
Type:
log Pow
Partition coefficient:
8.1
Remarks on result:
other: Prediction using software
Details on results:
The test chooses saturated n-octanol and aqueous as the separated phases through the shake flask method and the content of test material in different phases is determined by LC/MS. The test material (25°C) in its aqueous solution was not detected and the LOD of analysis method is 2.4x 10^-8 g/L, so the test material is almost insoluble in water, Pow (Partition coefficient (n-octanol/water)) and logPow can not be calculated.
 
Therefore Kow was estimated using specialist chemical prediction software (EPI-Suite v.4.0, 2000 US Environmental Protection Agency). The predicted LogKow (KOWWIN vl.67 estimate) = 8.10.
Conclusions:
Under the conditions of this study the Pow could not be determined. Iit was therefore estimated using specialist chemical prediction software and the predicted LogKow (KOWWIN v1.67 estimate) was 8.10.
Executive summary:

The partition coefficient of the test material was investigated in accordance with the standardised guideline "Guidelines for testing of chemicals", State Environmental Protection Administration (SEPA) of China, No. 107 with reference to OECD 107 and under GLP conditions, using the shale flask method with HPLC analysis. The test chooses saturated n-octanol and aqueous as the separated phases through the shake flask method and determines the content of test material in different phases by LC/MS. The test material (25°C) in its aqueous solution was not detected and the LOD of analysis method is 2.4 x 10-8 g/L, so the test material is almost insoluble in water. The Pow (Partition coefficient (n-octanol/water)) and logPow can not be calculated. Under the conditions of this study the Pow could not be determined, it was therefore estimated using specialist chemical prediction software and the predicted LogKow (KOWWIN v1.67 estimate) was 8.10.

Description of key information

Under the conditions of this study the Pow could not be determined. It was therefore estimated using specialist chemical prediction software and the predicted LogKow (KOWWIN v1.67 estimate) was 8.10.

Key value for chemical safety assessment

Log Kow (Log Pow):
8.1

Additional information

The partition coefficient of the test material was investigated in accordance with the standardised guideline "Guidelines for testing of chemicals", State Environmental Protection Administration (SEPA) of China, No. 107 with reference to OECD 107 and under GLP conditions, using the shale flask method with HPLC analysis. The test chooses saturated n-octanol and aqueous as the separated phases through the shake flask method and determines the content of test material in different phases by LC/MS. The test material (25°C) in its aqueous solution was not detected and the LOD of analysis method is 2.4 x 10-8g/L, so the test material is almost insoluble in water. The Pow (Partition coefficient (n-octanol/water)) and logPow can not be calculated. Under the conditions of this study the Pow could not be determined, it was therefore estimated using specialist chemical prediction software and the predicted LogKow (KOWWIN v1.67 estimate) was 8.10.