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Wet startup sulfuration method of hydrocracking unit

A hydrocracking and wet process technology, applied in hydrotreating process, hydrocarbon oil cracking, petroleum industry, etc., can solve the problems of long running time and large temperature fluctuation.

Active Publication Date: 2013-05-15
CHINA PETROLEUM & CHEM CORP +1
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  • Abstract
  • Description
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AI Technical Summary

Problems solved by technology

Gas-phase vulcanization is also called dry vulcanization. Only vulcanizing agent is used in the vulcanization process. After the vulcanization, the temperature of the catalyst bed needs to be lowered to a safe temperature, and low-nitrogen start-up oil is introduced to wet the catalyst. Long, under the premise of complete smoothness, it usually takes at least 6 days from the beginning of vulcanization to the complete replacement of raw material oil, and there are factors that are not conducive to stable operation such as prone to large temperature fluctuations

Method used

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Embodiment Construction

[0027] The method of the present invention is specifically as follows: firstly introduce light distillate fractionated oil at low temperature, then heat up, introduce vulcanizing agent when the temperature reaches the decomposition temperature of vulcanizing agent, hydrogenolysis of the vulcanizing agent obtains hydrogen sulfide gas, continue to heat up and wait for hydrogen sulfide to penetrate the catalyst After the hydrogen sulfide penetrates through the bed, adjust the injection amount of the sulfide agent according to the requirements of the hydrogen sulfide content, and at the same time raise the temperature to 230°C at a rate of ≯5°C / h, vulcanize at a constant temperature for 8 hours, and then heat up to 235-300°C, change to heavy sulfur-containing start-up oil, then raise the temperature to 330-370°C at a rate of 4-8°C / h, and keep the temperature at this temperature for 8 hours to complete the pre-sulfurization process of the catalyst. Then directly change into and stop...

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Abstract

The invention relates to a wet startup sulfuration method of a hydrocracking unit. The method comprises the following steps that: (a) light fraction startup oil is introduced at a low temperature; (b) a vulcanizing agent is introduced when a temperature at an inlet of a reactor reaches a decomposition temperature of the vulcanizing agent; (c) after hydrogen sulfide penetrates a catalyst bed in the reactor, heating is carried out according to a conventional hydrogenation catalyst sulfuration process, then heavy fraction sulfur-containing startup oil is introduced instead when the catalyst bed reaches a temperature of 235 to 300 DEG C, liquefied ammonia is introduced at the same time, and introduction of the vulcanizing agent is stopped; (d) after introduction of the heavy fraction sulfur-containing startup oil, final sulfuration of a catalyst is completed by using hydrogen sulfide obtained in a hydrogenolysis reaction of a sulfide in the startup oil; and (e) raw oil is directly introduced instead step by step after sulfuration is finished, and when 60 to 85% of raw oil is introduced, introduction of liquefied ammonia is stopped and normal production is started. Compared with the prior art, the method provided by the invention enables startup time to be shortened while guaranteeing performance of the catalyst and realizes safe and smooth startup.

Description

technical field [0001] The invention belongs to a processing method of oil refining technology, in particular to a method for starting a hydrogenation unit by wet sulfidation. Background technique [0002] With the increasingly stringent environmental regulations around the world, there is an increasing demand for clean, light, and clean fuels. Hydrogenation technology is an effective means of cleaning products. Therefore, hydrogenation units have become the standard configuration of refineries. Hydrogenation units continue to increase. [0003] The catalyst used in hydrogenation technology is a bifunctional catalyst, and its hydrogenation performance comes from active metals. Active metals are usually divided into two types: noble metals and non-noble metals, and non-noble metals mainly include Group VIB and Group VIII metals (such as Mo, W, Ni and Co, etc.), these metals usually exist in the form of oxidation in commercial hydrogenation catalysts. Due to the low hydrogen...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C10G47/00C10G65/12
Inventor 刘涛李宝忠张学辉宋若霞孙薇曾榕辉
Owner CHINA PETROLEUM & CHEM CORP
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