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- Joined: Thu Apr 13, 2006 11:08 pm
If anyone can assist we are having ethyl acetate recovery issues for residual solvent method on PE 40XL.
The recovery is 70%. The specification is 80%.
We have tried bumping up the thermostat time, temp and flow.
All other residual solvents recovery well within the specifications.
Do we need to put a second IS in just for ethyl acetate?
The API is cetirizine HCL.
Details of the method follows:
Specification
Cyclohexane: ≤ 200 ppm
Acetone: ≤ 200 ppm
Ethyl acetate: ≤ 200 ppm
Methyl ethyl ketone: ≤ 200 ppm
Isopropyl alcohol: ≤ 200 ppm
Dichloromethane ≤ 100 ppm
Carrier Gas: Helium
Flow Rate: 4.4 psi (approximately 30 kPa)
Injector: Split, packed with deactivated glass wool
Split Ratio: 10:1
Injector Temperature: 180°C
Run Time: 40 minutes
Column: Rtx-1, 30 m x 0.32 mm ID, 5.0 µm phase thickness
Column Temperature: 40ºC; hold for 4 minutes; ramp at 5ºC/minute to 110ºC; hold for 4 minutes; ramp at 20ºC/minute to 250ºC; hold for 11 minutes.
Equilibration Time: 2.0 minutes
Detector: FID
Detector Temperature: 270°C
Detector Range: 1
Attenuation: -6
Detector Gases: Air 450 mL/min; H2 45 mL/min
Instrument: Perkin-Elmer AutoSystem XL with HS40 XL
Headspace Conditions
Vial Size: 22-mL
Flow Rate: 10 psi, Helium
Sample Oven: 85°C
Needle: 100°C
Transfer Tube: 110°C
Thermostat Time: 10.00 minutes
Shaker: On
Injections per Vial: 1
GC Cycle Time: 55.0 minutes
Pressurization Time: 3.0 minutes
Injection Time: 0.20 minutes
Withdrawal Time: 0.5 minutes
Vent: On
4. Internal Standard
Pipet 0.5-mL of tetrahydrofuran (THF) into a 100-mL volumetric flask containing approximately 50-mL of purified water. Dilute to volume with purified water and mix well.
Pipet 1.0 mL of the stock solution into a 100-mL volumetric flask, and dilute to volume with purified water. Mix well.
5. Standard
5.1 Stock Solution
Accurately weigh approximately 200 mg each of cyclohexane, acetone, ethyl acetate (EtOAc), methyl ethyl ketone (MEK), and isopropyl alcohol (IPA), and 100 mg of dichloromethane (MeCl2) into a 100-mL volumetric flask containing approximately 20 mL of DMA. Dilute to volume with DMA and mix well. This solution contains approximately 2000 g/mL each cyclohexane, acetone, EtOAc, MEK and IPA, and 1000 g/mL MeCl2.
5.2 Intermediate Stock Solution
Pipet 5.0 mL of the stock solution into a 50-mL volumetric flask. Dilute to volume with DMA, and mix well. This solution contains approximately 200 g/mL each cyclohexane, acetone, EtOAc, MEK and IPA, and 100 g/mL MeCl2.
5.3 Working Standard Solution
Pipet 5.0 mL of stock solution into a 50-mL volumetric flask. Dilute to volume with DMA and mix well. This solution contains approximately 20 g/mL each of cyclohexane, acetone, EtOAc, MEK, and IPA, and 10 g/mL MeCl2.
Pipet 5.0 mL aliquots of working standard and 2.0 mL of internal standard solution into headspace vials, and immediately seal the vials.
6.Sample
Accurately weigh approximately 500 mg of sample into a headspace vial. Pipet 2.0 mL of internal standard solution into the vial and briefly swirl to dissolve the sample. Pipet 5.0 mL of DMA into the vial, and immediately seal the vial.
7.Blank
Pipet 5.0 mL of DMA and 2.0 mL of internal standard solution into a headspace vial. Immediately seal the vial.
Can someone help me?
