Method for detecting content of corrosive chlorine in phosphate fire-resistant oil
A detection method and anti-fuel technology, which is applied in the direction of measuring devices, instruments, scientific instruments, etc., can solve the problems of lack of pertinence, inability to distinguish and detect chlorine-containing substances separately, and inability to analyze and detect corrosive chlorine separately, etc., and achieve a wide range of applications , Improve the stability of safe operation, and the effect of efficient and targeted assessment
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Embodiment 1
[0050] First use the X-ray fluorescence spectrometer to test the phosphate ester anti-fuel standard solutions with different chlorine contents to establish a standard curve, and then analyze the samples to obtain the total chlorine content C of the phosphate ester anti-fuel samples. 1 . Then, prepare 0.1% HNO 3 Take 50mL of aqueous solution, weigh 1g of phosphate ester anti-fuel oil and add it into a high-temperature, high-pressure and corrosion-resistant polytetrafluoroethylene autoclave, stir and raise the temperature to 100°C, keep it constant for 2h, and after cooling to room temperature, obtain a phosphate ester anti-fuel oil sample and a decomposition test. The mixed solution after the liquid reaction is completed. Pour the mixed solution into a centrifuge tube and centrifuge at a speed of 1000rad / min for 30min to separate the phosphate ester fuel oil sample and the decomposition test solution. to be tested. Then use the X-ray fluorescence spectrometer to analyze the ...
Embodiment 2
[0056] First use the X-ray fluorescence spectrometer to test the phosphate ester anti-fuel standard solutions with different chlorine contents to establish a standard curve, and then analyze the samples to obtain the total chlorine content C of the phosphate ester anti-fuel samples. 1 . Then, take 30mL of deionized water, weigh 1g of phosphate ester anti-fuel fresh oil and add it into a high temperature, high pressure and corrosion-resistant polytetrafluoroethylene autoclave, stir and heat up to 85°C, keep it constant for 24h, and obtain phosphate ester anti-fuel oil after cooling to room temperature The mixture after the reaction between the fuel sample and the decomposition test solution is completed. Pour the mixed solution into a centrifuge tube and centrifuge at a speed of 3000rad / min for 10 minutes to separate the phosphate ester fuel oil sample and the decomposition test solution. The corrosive chlorine in the phosphate ester fuel oil sample enters the decomposition tes...
Embodiment 3
[0061] First use the X-ray fluorescence spectrometer to test the phosphate ester anti-fuel standard solutions with different chlorine contents to establish a standard curve, and then analyze the samples to obtain the total chlorine content C of the phosphate ester anti-fuel samples. 1 . Then, prepare 0.5% H 2 SO 4 Take 20mL of aqueous solution, weigh 1g of phosphate ester anti-fuel oil and add it into a high-temperature, high-pressure and corrosion-resistant polytetrafluoroethylene autoclave, stir and raise the temperature to 50°C, keep it constant for 8h, and obtain a phosphate ester anti-fuel oil sample and decomposition test after cooling to room temperature. The mixed solution after the liquid reaction is completed. Pour the mixture into a centrifuge tube and centrifuge at a speed of 10,000 rad / min for 5 minutes to separate the phosphate ester fuel-resistant fuel sample and the decomposition test solution. The corrosive chlorine in the phosphate ester fuel-resistant fuel...
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