Reverse feed high-aromatic-hydrocarbon hydro-upgrading method

A technology of reverse feeding and hydrogenation upgrading, which is applied in the fields of hydrotreating process, hydrocarbon oil treatment, petroleum industry, etc., and can solve the problems of increasing system scale, long pipeline system, and large number of equipment, etc.

Inactive Publication Date: 2016-06-22
何巨堂 +1
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] ①Using the cooling and condensation process of special quenching oil, the high-temperature reaction heat carried by the high-temperature hydrothermal cracking reaction effluent R10P becomes low-temperature heat energy, and the heat transfer area of ​​the subsequent recovery process will inevitably increase, that is, increase the reaction heat heat transfer investment for the recovery process;
[0007] ②The circulation process of special quenching oil increases the scale of the system, increases investment and energy consumption
[0009] On the other hand, in the hydrothermal cracking process R10 using an upflow expanded bed, in order to prevent the light fraction from entering the process to overcrack the prolific gas, the light fraction exhibits a gaseous state at high temperature and disturbs the hydraulic state of the heavy fraction stream , before the medium and low temperature coal tar enters the R10 process, the light fraction needs to be separated. The current method of separating the light fraction is the atmospheric and vacuum fractionation method. Their common feature is that the atmospheric and vacuum fractionation step is required. Or the light fraction BFL and the heavy fraction BLH obtained after vacuum fractionation are respectively pressurized into the joint hydrogenation upgrading process. The hydrocarbon stream to be pressurized, and finally all the hydrocarbon stream to be pressurized enters the high-p

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  • Reverse feed high-aromatic-hydrocarbon hydro-upgrading method

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Effect test

Embodiment 1

[0526] Based on the medium temperature coal tar in Table 3, using the process of the present invention, its operation objectives are:

[0527] ① After removing the high residual carbon and high impurity components with the conventional boiling point higher than 350℃ in the medium temperature coal tar, it enters the first hydrogenation reaction process using the fluidized bed hydrothermal cracking process R10;

[0528] The first hydrogenation reaction process R10 is operated by the method described in Chinese patent application CN104593060A; 2 sets of fluidized bed hydrothermal cracking reactors operated in series are set up; each fluidized bed hydrothermal cracking reactor is equipped with forced internal circulation of liquid products ; According to needs, each fluidized bed hydrothermal cracking reactor can discharge part of the liquid hydrocarbon oil as a liquid product, and can also be used to prevent the accumulation of fused ring aromatics in the fluidized bed hydrothermal cr...

Embodiment 2

[0543] The analysis data of medium temperature coal tar is shown in Table 3. According to the present invention, the combined hydro-upgrading process after high-pressure gas stripping and separation includes the following steps:

[0544] ①In the first hydrogenation reaction process R10, in the presence of hydrogen and the first hydrogenation reaction catalyst R10C, the hydrocarbons from step ② are mainly composed of hydrocarbon components with a conventional boiling point higher than 350°C, with high residual carbon components The raw material R10F enters the first hydrogenation reaction process R10 to perform the first hydrogenation reaction R10R to obtain the first hydrogenation reaction effluent R10P;

[0545] Hydrocarbon feedstock R10F, containing tricyclic aromatic hydrocarbons and polycyclic aromatic hydrocarbons;

[0546] The first hydrogenation reaction R10R includes a hydrorefining reaction and a hydrocracking reaction;

[0547] The first hydrogenation reaction process R10 ha...

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Abstract

A reverse feed high-aromatic-hydrocarbon hydro-upgrading method includes the steps that high-aromatic-hydrocarbon BF such as low-temperature coal tar serves as quenching oil for recovering reaction heat to make direct contact with high-temperature gas-phase-contained material flow R10PVX based on first hydrogenation reaction outflow matter R10P in the high-pressure separation process, at least one time of contact is completed so that part of light components in the raw material hydrocarbon BF can be gasified and separated into gas S1V and liquid material flow S1L possibly containing solid, the material flow S1L or material flow S1LPX obtained after high-carbon-residue components are removed from the material flow S1L enters the first hydrogenation reaction process R10 to be subjected to hydrogenation thermal cracking reaction to be converted into R10P, R10P can enter the previous separation step BS first to be separated into gas BSV and liquid material flow BSL possibly containing solid, at least part of the material flow BSL can return to the step R10 so that circulation conversion and catalyst circulation can be achieved, and the material flow containing solid in the step R10 or the step BS is used for discharging waste catalysts.

Description

Technical field [0001] A reverse feed high-aromatics hydro-upgrading method. In the high-pressure separation process S1, high-aromatics BF such as medium and low temperature coal tar acts as a quench oil for recovering reaction heat and directly contacts the high-temperature content based on the first hydrogenation reaction effluent R10P The gaseous stream R10PVX completes at least one contact to realize the vaporization and separation of part of the light components in the raw hydrocarbon BF into gas S1V and liquid stream S1L that may contain solids. The stream S1L or stream S1L is removed from the high residual carbon components. The stream S1LPX enters the first feeder The hydrogen reaction process R10 performs the hydrothermal cracking reaction to convert into R10P. R10P can first enter the pre-separation step BS to be separated into gas BSV and a liquid stream BSL that may contain solids. At least a part of the stream BSL can be returned to R10 for cyclic conversion and real...

Claims

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Application Information

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IPC IPC(8): C10G67/00
CPCC10G67/00C10G2300/1096
Inventor 何巨堂何艺帆
Owner 何巨堂
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