A method and process system for preparing gasoline and diesel by co-hydrogenation of coal tar and biomass oil
A process system and biomass technology, applied in the field of coal chemical processing and utilization, can solve the problems of inability to large-scale production, high hydrogen consumption in hydrogenation reaction, low adaptability, etc., and achieve increased co-hydrogenation reaction efficiency and hydrogenation hydrogen consumption. Large, resource-saving effect
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Embodiment 1
[0152] at 7.2×10 4 Take the co-hydrogenation of t / a (10t / h) coal tar and biomass oil as an example, hydrogenation to produce gasoline and diesel. Coal tar and biomass oil are mixed into the hydrorefining unit, and the process conditions of the hydrorefining unit are shown in Table 2 to Table 5. The oil produced by separation and hydrorefining obtains hydrorefining diesel oil and hydrorefining gasoline that are rich in a large amount of saturated aromatic hydrocarbons.
[0153] In the present embodiment, coal tar and biomass grease are mixed as a mixed raw material for fixed bed hydrocracking, and the above-mentioned method is adopted in the hydrocracking process: coal tar and biomass grease are co-hydrogenated, and the steps are as follows:
[0154] a. Coal tar and biomass oil slurry mixing step: the coal tar with the feed flow ratio of 5:5 and the biomass oil are mixed uniformly under the stirring condition of 80℃~200℃ to obtain the raw material.
[0155] b. The raw material...
Embodiment 1
[0157] Based on Example 1, the feed flow ratio was adjusted to 4:6, and the conditions of each reactor were changed to temperature (220, 320, 350, 350) °C, reaction pressure of 9MPa, and total space velocity of 0.3h. -1 , The volume ratio of hydrogen to oil is 1700:1, producing diesel and gasoline with saturated aromatic content of 89.196%.
[0158] Compared with Example 1, after changing the feed ratio, temperature, pressure, space velocity and hydrogen oil volume ratio, the obtained product is better than Example 1.
Embodiment 3
[0160] Based on Example 1, the feed flow ratio was adjusted to 3:7, and the conditions of each reactor were changed to temperature (240, 330, 360, 360) °C, reaction pressure of 10 MPa, and total space velocity of 0.35 h. -1 , The volume ratio of hydrogen to oil is 1500:1, producing diesel and gasoline with saturated aromatic content of 91.01%.
[0161] Compared with Example 1, after changing the feed ratio, temperature, pressure, space velocity and hydrogen oil volume ratio, the obtained product is better than Example 1.
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