FORD FLTM AZ 105-1-2000 TITRIMETRIC DETERMINATION OF THE PEROXIDE NUMBER OF OXIDIZED GASOLINE TEST FUELS (Replaces FLTM AZ 005-01).pdf
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1、 FORD LABORATORY TEST METHOD AZ 105-01 Date Action Revisions 2000 08 22 Revised Editorial no technical change A. Cockman 2000 05 22 Editorial no technical change A. Cockman 1990 12 07 Printed copies are uncontrolled Page 1 of 6 Copyright 2000, Ford Global Technologies, Inc. TITRIMETRIC DETERMINATION
2、 OF THE PEROXIDE NUMBER OF OXIDIZED GASOLINE TEST FUELS Application This method describes a titrimetric method for determining the Peroxide Number of oxidized (“sour“) gasoline test solutions prepared using the procedure contain ed in the Appendix. The method can also be used (with certain precautio
3、ns) to measure the depletion of the Peroxide Number during the course of immersion tests using the test solution so that the need to replenish the test solution can be determined. Apparatus Required Erlenmeyer Flasks* - 250 mL with ground glass joint. Condenser* Allihn or Leibig water cooled type wi
4、th ground glass joint to fit the Erlenmeyer flasks. Measuring Cylinders* - 100 mL glass, graduated. Hot Plate, or other means of heating* Suitable for heating the Erlenmeyer flasks with fitted condensers to reflux the reagents. Burette* - 10 mL glass, graduated * - Apparatus is available from any su
5、itable laboratory equipment supplier. Reagents Required Ethanoic (Acetic) Acid - glac ial, analytical reagent grade. Potassium Iodide Solution 100 g/liter analytical reagent grade in distilled water. Store in a dark glass reagent bottle. Discard if the solution gives the equivalent of a Peroxide Num
6、ber of 2 when carrying out a blank titr ation. FORD LABORATORY TEST METHOD AZ 105-01 Page 2 of 6 Copyright 2000, Ford Global Technolog ies, Inc. Propan-2-ol (Iso-Propyl Alcohol) - analytical reagent grade. Sodium Thiosulphate Solution - 0.1 N accurately standardized aqueous solution. Ethanoic Acid/P
7、ropan-2-ol Mixture Mix 100 mL glacial ethanoic acid with 1150 mL Propan - 2 - ol. Store in a dark glass bottle. Conditioning and Test Conditions All test values indicated herein are based on material conditioned in a controlled atmosphere of 23 +/ - C and 50 +/ - 5 % relative humidity for not less t
8、han 24 h prior to testing and tested under th e same conditions unless otherwise specified. Procedure 1. Add 25 mL ethanoic acid/Propan - 2 - ol mixture to a 250 mL Erlenmeyer flask. 2. Add 10 mL of the Potassium Iodide solution to the flask. 3. Accurately transfer by pipette 2 mL of the oxidized ga
9、s oline test solution under test to the flask. 4. Fit the condenser to the flask and reflux gently on the hot plate for 5 minutes to release free Iodine. 5. Cool the flask in a cold water bath and wash the condenser down with 5 mL of Distilled Water. 6. R emove the condenser and titrate the contents
10、 of the flask with the standardized 0.1 N Sodium Thiosulfate until the yellow coloration just disappears. Record the volume of Sodium Thiosulfate consumed as V1. 7. Carry out a blank determination by repeating steps 1 to 6 but omit the addition of the oxidized test solution (step 3). Record the volu
11、me of Sodium Thiosulfate consumed as V2. This volume should not exceed 0.1 mL. 8. Calculate the Peroxide Number according to the following equation: Peroxide Numb er = (V1 - V2) x N x 1000 Sample Volume x 2 FORD LABORATORY TEST METHOD AZ 105-01 Page 3 of 6 Copyright 2000, Ford Global Technolog ies,
12、Inc. Where: V1 = Volume of titrant consumed by sample, mL V2 = Volume of titrant consumed by blank, mL N = Normality of standardized sodium thiosulfate solution Note: This method can be used to determine the Pe roxide Number of the oxidized gasoline test solution during the course of an immersion te
13、st. However the following precautions should be observed: 1. Most immersion tests involving elastomers will result in the test solution becoming yellowed by the extr action of additives in the rubber. This should be taken into account when the end point of the titration is established. 2. The additi
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