Adiabatic cooling type methanation synthesis method for methane
A methanation and chemical synthesis technology, which is applied in the petroleum industry, gas fuel, fuel, etc., can solve the problems of high investment in adiabatic methanation and high energy consumption of isothermal methanation, so as to reduce side reactions of methanation, prolong service life, and reduce energy consumption. The effect of high utilization
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Embodiment 1
[0034] The technical flow of the low-pressure high-carbon monoxide raw material gas adiabatic cooling type methanation to synthesize methane in this embodiment is as follows:
[0035] Process such as figure 1 shown. In this embodiment, the raw material gas is a low-pressure high carbon monoxide gas, the raw material gas pressure is ~0.93MPa(G), the temperature is normal temperature, and the flow rate is ~51000Nm 3 / h, the main composition of the gas is CO: 20%, CO2: 3%, H2: 74%, CH4: 1.4%, enters the heat exchanger E3 to exchange heat with the gas at the outlet of the hot water tower, and the raw gas is heated to ~110°C, Then it is divided into two parts: ~40% raw material gas is mixed with the same flow rate of circulating gas after heating. After mixing, CO:~10%, CO2:~2%, H2:~45.7%, CH4:~38.5%, enter the saturation tower T1, the temperature of the raw material gas coming out from the saturation tower T1 is ~129°C, the water content is ~26.5%, and it enters the heat exchang...
Embodiment 2
[0040] The low-pressure feed gas adiabatic cooling type methanation synthesis methane production process of LNG in this embodiment is as follows:
[0041] Process such as figure 2 shown. The raw material gas in this embodiment is a low-pressure raw material gas, the raw material gas pressure is ~0.93MPa(G), the temperature is normal temperature, and the flow rate is ~60000Nm 3 / h, the main composition of the gas is CO: 8.6%, CO2: 3%, H2: 60%, CH4: 24%, enters the heat exchanger E3 to exchange heat with the gas at the outlet of the hot water tower T2, and the raw gas is heated to ~113°C , and then enter the saturation tower T1, the temperature of the raw material gas from the saturation tower T1 is ~ 123 ° C, the water content is ~ 22%, enter the heat exchanger E1 and exchange heat with the reaction gas coming out of the adiabatic cooling type methanation reactor R1, and the raw gas is heated to ~250°C enters the adiabatic cooling type methanation reactor R1, the temperature...
Embodiment 3
[0046] The flow process of the medium-pressure high-carbon monoxide raw material gas adiabatic cooling type methanation synthesis methane to LNG in this embodiment is as follows:
[0047] Process such as image 3 shown. In this embodiment, the raw material gas is a medium-pressure high carbon monoxide gas, the raw material gas pressure is ~2.0MPa(G), the temperature is normal temperature, and the flow rate is ~51000Nm 3 / h, the main composition of the gas is CO: 20%, CO2: 3%, H2: 74%, CH4: 1.4%, enters the heat exchanger E3 and exchanges heat with the gas at the outlet of the hot water tower T2, and the raw gas is heated to ~142°C , and then divided into two parts: ~45% raw material gas is mixed with the same flow rate after heating, after mixing CO: ~10%, CO2: ~2.1%, H2: ~45%, CH4: ~40%, enter saturation Tower T1, the temperature of the raw material gas from the saturated tower T1 is ~148°C, the water content is ~22%, and it enters the heat exchanger E1 to exchange heat wit...
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