A kind of residual oil processing method
A treatment method and technology for residual oil, which is applied in the fields of hydrocarbon oil treatment, hydrotreating process, petroleum industry, etc. It can solve the problems of unfavorable device stable operation, unable to fundamentally change the pressure drop growth trend of the pre-reactor, etc.
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Embodiment 1
[0076] The properties of raw material A used in Example 1 are shown in Table 1. After separation, light fraction and heavy fraction were obtained, and the cut point was 590°C. The heavy fraction is processed through a solvent deasphalting unit to obtain deasphalted oil and deoiled asphalt. The obtained deasphalted oil and light fraction, 50% of the catalytic cracking diesel and all the catalytic cracking heavy cycle oil of the catalytic cracking unit are sent to the hydrogenation pretreatment reaction zone. The total catalyst loading, feed properties and feed amount of the hydropretreatment reactor A, hydrogenation pretreatment reactor B, and hydrogenation pretreatment reactor C are exactly the same, and the hydrogenation pretreatment reactor A, Catalysts in Hydrogenation Pretreatment Reactor B, Hydrogenation Pretreatment Reactor C, and Hydrotreating Reactor D are loaded according to the method in Table 3, and the operating conditions of residue oil hydrogenation are shown in ...
Embodiment 2
[0078] In Example 2, the properties of the raw material B used are shown in Table 1. After separation, the light fraction and the heavy fraction were obtained, and the cut point was 605°C. The obtained heavy fraction is processed through a solvent deasphalting unit to obtain deasphalted oil and deoiled asphalt. The deasphalted oil and light fraction, 30% of the catalytic cracking diesel and all the catalytic cracking heavy cycle oil of the catalytic cracking unit are sent to the hydropretreatment reaction zone. The total catalyst loading and feed properties of the hydrogenation pretreatment reactor A, hydrogenation pretreatment reactor B, and hydrogenation pretreatment reactor C are exactly the same, and the feed space velocity is different. The hydrogenation pretreatment reactor The hourly volume space velocity of liquid A is 0.20h -1 , the hourly volumetric space velocity of liquid B in the hydrogenation pretreatment reactor is 0.32h -1 , the volumetric space velocity of l...
Embodiment 3
[0080] In Example 3, raw materials A, B, and C were separated to obtain light fraction and heavy fraction, and the cut point was 600°C. Then, the obtained heavy fraction is processed through a solvent deasphalting device to obtain deasphalted oil and deoiled asphalt. The hydrogenation pretreatment reactor A adopts the light fraction and deasphalted oil of raw material A, the hydrogenation pretreatment reactor B adopts the light fraction and deasphalted oil of raw material B, and the hydrogenation pretreatment reactor C adopts the light fraction and deasphalted oil of raw material C. Distillates and deasphalted oils. The feed amount of described hydrogenation pretreatment reactor A, hydrogenation pretreatment reactor B, hydrogenation pretreatment reactor C is the same, and described hydrogenation pretreatment reactor A, hydrogenation pretreatment reactor B, hydrogenation pretreatment reactor The same catalyst loading method was adopted in the hydrogen pretreatment reactor C. T...
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