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Separation method and device for reforming reaction product

A reforming reaction and product technology, applied in the petroleum industry, hydrocarbon distillation, etc., can solve the problems of consuming cooling load, increasing heating load, etc.

Active Publication Date: 2017-06-06
CHINA PETROCHEMICAL CORP +1
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Problems solved by technology

The temperature of the reformed oil obtained by the above process is about 40°C, and the subsequent fractionation process needs to raise the temperature of the reformed oil to a higher temperature (150-190°C). Such repeated cooling-heating process not only consumes a lot of cooling The load also increases the heating load of the subsequent process

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  • Separation method and device for reforming reaction product

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Embodiment Construction

[0023] The present invention is further explained below in conjunction with the examples, but the examples do not limit the present invention in any form.

[0024] Taking the 800,000-ton / year continuous reforming unit of an oil refinery as an example, the pre-separation process of the present invention is illustrated. This device adopts UOP coaxial continuous reforming process. The reforming reaction temperature is 380~520℃ and the pressure is 0.34~0.45MPa. , and then cooled to about 40°C by air cooling, and enter the subsequent separation and re-contact part to separate circulating hydrogen and high-purity hydrogen. The analysis and composition data of the reforming reaction products are shown in Table 1.

[0025] number of carbon atoms alkanes Naphthenic Aromatics C1 11.91 - - C2 2.38 - - C3 0.0013 - - C4 0.039 - - C5 7.71 0.58 - C6 10.58 4.64 3.56 C7 7.51 8.30 3.37 C8 8.12 8.14 7.26 C9 5.56 5.67 ...

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Abstract

The invention relates to a separation method and separation device for a reform reaction product, and particularly relates to a hydrogen pre separation method of the reform reaction product. The separation method mainly includes the following steps: the reform reaction product (1) and reform reaction feed materials (2, 3), after heat transfer by (4), directly enters into an additionally arranged pre separation tank (7); a pre separation gas phase (9), after cooling by an air cooler(11), enters a subsequent separation tank (12) and a recontact part for separating circulating hydrogen (13) and high purity hydrogen; a pre separation liquid phase (10), after mixing with a recontact tank liquid phase (8), directly enters into a subsequent fractionation part. The separation method reduces the flow quantity of repeated cooling and heating material flows, reduces the heating load of the fractionation part, and alleviates the contradiction of summer cooling underload, and compared with the prior art, the separation method reduces the cooling load by 14.5%, reduces the heating load by 18.2%, and is remarkable in energy-saving effect.

Description

technical field [0001] The invention belongs to the technical field of separation of reforming reaction products in oil refining processes, and in particular relates to a two-stage condensation separation method for separation of reforming reaction products. Background technique [0002] The reforming process is an important process in the oil refining and petrochemical industry, and is mainly used to produce high-octane gasoline or important chemical raw materials such as benzene and p-xylene. The reforming reaction temperature is relatively high, ranging from 380 to 520°C. After heat exchange between the high-temperature reforming reaction product and the reforming reaction feed, it is still 90 to 110°C. At this time, the reaction product is in a gas-liquid two-phase state. In order to separate the hydrogen in the product for recycling and delivery, at present, all domestic reformers use air cooling to reduce the temperature of the reaction product to 30~50°C during produc...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C10G7/00
Inventor 叶剑云王北星张炜田涛申福龙王跃崔宇
Owner CHINA PETROCHEMICAL CORP
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