One-step super-depth method for removing arenes from natural gas synthetic oil
A technology of natural gas and synthetic oil, which is applied in the field of hydrogenation refining natural gas synthetic oil, and can solve the problem of high aromatic content
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Embodiment 1
[0030] The natural gas-to-oil raw material enters the reactor together with hydrogen, at a hydrogen partial pressure of 8.0MPa, a reaction temperature of 220°C, and a liquid hourly volume space velocity of 0.8h -1 , The volume ratio of hydrogen to oil is 700Nm 3 / m 3 Under certain reaction conditions, it reacts with the precious metal hydrorefining catalyst RLF-10; the reacted stream passes through a high-pressure and low-pressure gas-liquid separation system to separate liquid products, and the hydrogen-rich gas returns to the two reactors for recycling through a circulating compressor.
[0031] The reaction conditions and main product properties are listed in Table 2. It can be seen from Table 2 that the content of aromatics in the reaction product was reduced to 621 μg / g, and the removal rate of aromatics calculated from this was 99.18%.
Embodiment 2
[0033] The natural gas-to-oil raw material enters the reactor together with hydrogen, at a hydrogen partial pressure of 8.0MPa, a reaction temperature of 280°C, and a liquid hourly volume space velocity of 0.8h -1 , The volume ratio of hydrogen to oil is 700Nm 3 / m 3 Under certain reaction conditions, it reacts with the precious metal hydrorefining catalyst RLF-10; the reacted stream passes through a high-pressure and low-pressure gas-liquid separation system to separate liquid products, and the hydrogen-rich gas returns to the two reactors for recycling through a circulating compressor.
[0034] The reaction conditions and main product properties are listed in Table 2. It can be seen from Table 2 that the content of aromatics in the reaction product was reduced to 173 μg / g, and the removal rate of aromatics calculated from this was 99.77%.
[0035] The reaction product was cut, and the aromatic hydrocarbon content and main properties of the kerosene fraction and diesel frac...
Embodiment 3
[0037] The natural gas-to-oil raw material enters the reactor together with hydrogen, at a hydrogen partial pressure of 6.4MPa, a reaction temperature of 260°C, and a liquid hourly volume space velocity of 0.8h -1 , The volume ratio of hydrogen to oil is 700Nm 3 / m 3 Under certain reaction conditions, it reacts with the precious metal hydrorefining catalyst RLF-10; the reacted stream passes through a high-pressure and low-pressure gas-liquid separation system to separate liquid products, and the hydrogen-rich gas returns to the two reactors for recycling through a circulating compressor.
[0038] The reaction conditions and main product properties are listed in Table 2. It can be seen from Table 2 that the aromatics content of the reaction product was reduced to 271 μg / g, and the calculated aromatics removal rate was 99.64%.
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