Method for preparing low carbon olefin by hydrocarbon thermal cracking
A technology of low-carbon olefins and carbon olefins, applied in the field of producing low-carbon olefins, can solve the problems of low heat transfer efficiency, waste of raw material hydrocarbon resources, huge energy demand, etc., and achieve the effect of avoiding the heat transfer process
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Embodiment 1
[0035] Naphtha is gasified in a heating furnace at a feed rate of 1000g / h, mixed with 200g / h of diluted steam and heated to 580°C, the heated mixture is mixed with 50g / h of hydrogen, and then mixed with 1200g / h of hydrogen h Air is mixed and enters the hydrogen catalytic combustion device, which is filled with Pt / Al 2 o 3 Catalyst (produced by Beijing Research Institute of Chemical Industry, brand BHO-H2), reaction pressure 0.1MPa, space velocity 4h -1 (weight), after passing through the device, the temperature of the mixed gas reaches 860°C, and enters the adiabatic reaction device after mixing with 300g / h water vapor. In the adiabatic reaction device, the raw material hydrocarbons undergo a cracking reaction to generate low-carbon olefins. After the reaction, the temperature of the mixed gas drops to 750°C. Low-carbon hydrocarbon products such as ethylene propylene (Table 1).
[0036] Table 1
[0037] composition%
[0038] composition%
Embodiment 2
[0040] Naphtha is gasified in a heating furnace at a feed rate of 1000g / h, mixed with 200g / h of dilution steam and heated to 580°C, first mixed with 50g / h of hydrogen, then mixed with 240g / h of oxygen, and entered Hydrogen catalytic combustion device filled with Pt / Al 2 o 3 Catalyst (produced by Beijing Research Institute of Chemical Industry, brand BHO-H2), reaction pressure 0.1MPa, space velocity 4h -1 (weight), after passing through the device, the temperature of the mixed gas reaches 860°C, and enters the adiabatic reaction device after mixing with 300g / h water vapor. In the adiabatic reaction device, the raw material hydrocarbons undergo cracking reaction to produce low-carbon olefins. After the reaction, the temperature of the mixed gas drops to 750°C. The mixed gas enters the quenching heat exchange device, and the temperature of the mixed gas quickly drops to 320°C and enters the separation system to obtain ethylene. Propylene and other low-carbon hydrocarbon product...
Embodiment 3
[0044] Naphtha is gasified in a heating furnace at a feed rate of 1000g / h, mixed with 200g / h of dilution steam and heated to 580°C, first mixed with 30g / h of hydrogen, then mixed with 140g / h of oxygen, and entered The first hydrogen catalytic combustion device, which is filled with Pt / Al 2 o 3 Catalyst (produced by Beijing Research Institute of Chemical Industry, brand BHO-H2), reaction pressure 0.1MPa, space velocity 4h -1 (weight), after passing through the device, the temperature of the mixed gas reaches 820°C, and enters the first adiabatic reaction device after mixing with 300g / h water vapor. In the first adiabatic reaction device, the raw material hydrocarbons undergo a cracking reaction to generate low-carbon olefins, and the temperature of the mixed gas drops to 730°C after the reaction;
[0045] The mixed gas is mixed with 12g / h of hydrogen and 60g / h of oxygen into the second catalytic combustion device, which is filled with Pt / Al 2 o 3 Catalyst (produced by Beiji...
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