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Main reactor temperature, gas-to-air ratio, air pressure difference; Temperature of the combustion furnace, gas-to-air ratio; Liquid level in the waste heat boiler, steam generation pressure; Inlet and outlet temperatures of the Claus reactor and hydrogenation reactor; Hydrogen volume after the hydrogenation reactor; Liquid level in the fluidized bed; Temperature and pH value of the quench water; Liquid levels and pressures in various towers, temperature at the top of the regeneration tower; Steam flow rate to the reboiler; Liquid level in the amine solution tank; Exit temperature of the steam superheater; Oxygen content in the flue gas
There is also the pressure difference of the filter. Pressure of the external hydrogen supply. The temperature and pressure of superheated steam.
There is also the issue of the operation of hydrogen sulfide and sulfur dioxide online analyzers; sulfur tends to accumulate in the pipelines of these instruments, which affects their proper functioning. The quality of water supplied to the boiler is analyzed, and chemicals are added regularly
May I ask what processing method you use? Why is H2 needed as well? We use the Klaus reaction without adding H2.
3D sulfur recovery! Hydrogen reduction, right?
Increasing hydrogen reduction absorption can bring exhaust emissions in line with standards (GB16297)
In fact, every parameter is important. As the saying goes, “Who knows which cloud will bring rain?” Any abnormality in a parameter can pose a serious risk
There is also the pressure and temperature from the jacket heating