Combination processing method of inferior heavy oil

A technology for combined processing and low-quality heavy oil, applied in the petroleum industry, hydrotreating process, processing hydrocarbon oil, etc., can solve the problems of waste of resources and unutilized, and achieve the inhibition of coke formation in the process, the reduction of the addition amount, and the reduction of the metal content. Effect

Active Publication Date: 2014-05-14
CHINA PETROLEUM & CHEM CORP +1
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In this method, a certain amount of liquid product can still be obtained if asphalt is subjected to liquid-phase hydrogenation treatment, but this method gasifies it to produce synthesis gas, which is not well utilized, resulting in waste of resources

Method used

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  • Combination processing method of inferior heavy oil

Examples

Experimental program
Comparison scheme
Effect test

preparation example 1

[0061] 43.7g molybdenum naphthenate (Mo accounted for 10.3% by weight), 30.8g tungsten naphthenate (W accounted for 8.78% by weight), 6.2g nickel tetracarbonyl (Ni accounted for 33.73% by weight), 6.5g vanadium hexacarbonyl (V accounted for 23.29% by weight), 25.3g rare earth isooctanoate (La accounted for 4.8% by weight, Ce accounted for 7.1% by weight), 17.7g of vulcanizing agent (DMDS) and 295mL of residue (Kuwait vacuum residue) were sequentially added to a 500mL autoclave , under the conditions of 370°C, 6.0MPa (hydrogen initial pressure), and high-speed stirring (800rpm) for 180min, the product was centrifuged, extracted with toluene, and vacuum-dried to obtain catalyst A. The elemental composition of catalyst A was analyzed by XRF. : C-64.6%, H-7.2%, S-14.2%, N-0.3%, Mo-4.5%, W-2.7%, Ni-2.1%, V-1.5%, La-1.2%, Ce-1.8% .

[0062] Observed under the electron microscope, the average particle diameter of the catalyst A is 0.5 μm, and the average particle diameter of the met...

Embodiment 1

[0067] Example 1 illustrates the effect of the inferior heavy oil combined processing method provided by the present invention.

[0068] a. Mix the residual oil raw material with catalytic cracking heavy cycle oil, oil slurry and deoiled asphalt as a mixed raw material. The mixing weight ratio is: residual oil raw material: catalytic cracking heavy cycle oil: oil slurry: deoiled asphalt = 70:15 : 10: 5, the mixed raw materials enter the liquid-phase fluidized bed hydrogenation reactor for hydrogenation reaction, the catalyst is the same as in Comparative Example 1, and the operating conditions and product properties are shown in Table 2.

[0069] b. Introduce the hydrogenated product obtained in step a into the distillation tower for fractionation into light oil and hydrogenated heavy oil, the cut point is 350°C, and the hydrogenated heavy oil (>350°C) enters the solvent extraction tower for solvent extraction and deasphalting, Deasphalted oil and deoiled asphalt were obtained...

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Abstract

A combination processing method of inferior heavy oil comprises the following steps that: A, a heavy oil feedstock enters into a liquid flow bed reactor for hydrocracking in the effects of hydrogen and a dispersible hydrocracking catalyst; B, the obtained hydrogenation product is fractionally distilled to obtain light oil and heavy oil, the cutting point is 320-380 DEG C, and the light oil is led out of the device; C, the heavy oil obtained by fractional distillation is extracted by a solvent to obtain deasphalted oil and deoiled asphalt; D, the deoiled asphalt is contacted with a catalytic cracking catalyst for cracking reaction in catalytic cracking conditions, and light oil, heavy cycle oil and slurry oil are obtained by fractional distillation; E, the deoiled asphalt obtained by the step C is recycled into the liquid flow bed reactor in the step A. According to the combination processing method provided by the invention, a variety of processes are integrated for processing of the inferior heavy oil, full transformation of the heavy oil can be realized, and more gasoline and diesel oil which are excellent in performances can be obtained.

Description

technical field [0001] The invention relates to a processing method for lightening heavy oil, more specifically, relates to a method for processing heavy oil by adopting heavy oil hydrocracking, solvent deasphalting and catalytic cracking processes. Background technique [0002] Due to the increasingly heavy and inferior quality of crude oil, the difficulty of crude oil processing has increased, and the yield of light oil products has decreased. However, the market demand for high-quality light oil products continues to increase, and environmental protection regulations tend to be stricter. There is an urgent need for refineries to develop effective processing methods for low-quality and heavy feedstock oils. [0003] Heavy oil processing mainly has two types of processing technology, one is hydrogenation process, including hydrotreating, hydrocracking and hydrofining; the other is decarbonization process, including solvent deasphalting, coking, visbreaking and heavy oil cat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C10G67/14
Inventor 龙军侯焕娣董明王子军
Owner CHINA PETROLEUM & CHEM CORP
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