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Trace Analysis Laboratory,lne. <br /> TOTAL PETROLEUM HYDROCARBONS AS GASOLINE (TPH-G WITH BENZ <br /> XYLENE, AND ETHYLBENZENE (BTXE) FOR AIR ) ENE, TOLUENE, <br /> This method is based on California Department of Health Services Method for <br />' Total Petroleum Hydrocarbons as Gasoline and BTXE. This method uses alternative <br /> sample introduction and gas chromatographic conditions' as specified below. <br />' Sa e e aratio : <br /> There is no sample preparation. <br /> Sample f t od c io : <br /> Air samples are introduced to the gas chromatograph (GC) through a purge <br />' and trap device. <br /> A gas tight syringe is used to draw a sample from the Tedlar bag or sample <br /> I canister. The sample is slowly injected into the purge and trap, and is <br /> adsorbed onto the trap. The trap is then heated, and the sample is thermally <br /> desorbed into the GC column. <br />' Gas Chromatography Analysis: <br /> The volatile organics are separated on a 6-ft x 2 mm I.D. gas <br /> chromatography column packed with 5% SP-1200/1 .759 Bentone-34 on Supelcoport. <br /> A flame ionization detector (FID) is used to detect total petroleum hydrocarbons <br /> as gasoline (TPH-G) . The FID is preceded by a photoionization detector (PID) , <br /> which is used to detect the BTXE. <br /> Gas Chromatograph -Conditions: <br /> CARRIER GAS: Nitrogen <br /> FLOW RATE: 30 ml/min. <br /> INJECTOR TEMPERATURE: 240o C <br /> DETECTOR TEMPERATURE: 2700 C <br /> INITIAL TEMPERATURE: 500 C <br /> Hold for 2 minutes <br /> PROGRAM RATE: 60 C/min. <br /> I FINAL TEMPERATURE: 90o C <br /> Hold for 17 minutes <br /> Calculation: <br /> TPH-G is quantified b comparing the <br /> y p g sum of the area of peaks from the <br /> sample to the sum of the area of peaks in the gasoline standard. The BTXE are <br /> identified by comparing the retention times of the sample peaks to those of the <br /> standards. The compounds are quantified by comparing the area of the sample <br /> peaks to those of the standards. <br /> 9/7/90 <br />