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1) Regeneration Gasoline: A Mixture Of Hydrogen And Inert Fuel (hydrogen Accounts For 5% -10%)
Two) Quantity: 40L Gasoline Cylinder 10Mpa
Three) Regenerative Gas Tension: .05Mpa (the Fuel Intake
1) Regeneration gasoline: a mixture of hydrogen and laboratory glovebox inert gasoline (hydrogen accounts for 5% -ten%) two) Quantity: 40L fuel cylinder 10Mpa 3) Regenerative fuel strain: .05Mpa (the fuel consumption for each half hour in the condition of .05Mpa is that the cylinder pressure drops by 1.5Mpa. If it exceeds one.5Mpa, the force of the stress regulator’s plan will be lowered, if it is significantly less than one.5Mpa Raise the strain of the stress regulator routine) 4) Course of action: 3 several hours heating-three hrs heating and ventilation-3 hrs vacuuming-1 hour pumping-10 several hours cooling 5) Actions: ① Join the regeneration gasoline (examine the pipeline for leaks immediately after link: soon after connecting, open the primary valve of the pressure minimizing valve to the utmost, open up the auxiliary meter to .1Mpa, change off the most important valve, wait around fifteen minutes, if the strain of the auxiliary meter remains at .1 Mpa continues to be unchanged, indicating no air leakage) ②Set the stress of the auxiliary gauge of the force lessening valve to .1Mpa (the force through air flow is about .06-.08MPa) ③ Close the cycle and analyzer ④Turn on the vacuum pump ⑤ Get started regeneration ⑥ The new software ends at 20h (thoroughly clean before cleansing, water and oxygen index <200ppm). 6) Note: Do not cut off the power and gas during the regeneration process (especially the first 6 hours)! Some pressure reducing valves are not allowed, and the pressure needs to be adjusted appropriately to ensure continuous ventilation for 3 hours! 7) Observation: whether the regeneration gas flowmeter shows about 20L / min, otherwise adjust the pressure of the pressure reducing valve.
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