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Desulfurization adsorbent for gasoline

A technology of adsorbent and gasoline, which is applied in the treatment of hydrocarbon oil, refined hydrocarbon oil, petroleum industry, etc. It can solve the problems of low specific surface area of ​​adsorbent, low selectivity of desulfurizer, harsh operating conditions, etc., so as to reduce operating cost and facilitate The effect of mild control and process operating conditions

Inactive Publication Date: 2017-05-31
ZHENGZHOU BEIDOU COMM TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the desulfurizers in the prior art generally have the following deficiencies: 1. The desulfurization depth is not enough, and it is difficult to desulfurize to below 5 ppmw; 2. The specific surface area of ​​the adsorbent is low, and the adsorption capacity of sulfur is relatively limited; 3. The operating conditions of the desulfurization process are harsh. And the energy consumption is high, the operation cost is high; 4. The desulfurization process is not friendly to the environment; 5. The selectivity of the desulfurizer is low and the service life is short
In addition, most of the existing desulfurizers use activated carbon, ZSM-5 and other materials, and there is very little information about the use of kaolin

Method used

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  • Desulfurization adsorbent for gasoline

Examples

Experimental program
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Effect test

Embodiment 1

[0017] In the embodiment of the present invention, a desulfurization adsorbent for gasoline is composed of the following raw materials in parts by weight: 27 parts of kaolin, 3 parts of strontium acetate, 13 parts of polyvinyl alcohol, and 5 parts of ethylene glycol.

[0018] Mix polyvinyl alcohol with 5.5 times its mass of deionized water to prepare a polyvinyl alcohol solution; mix ethylene glycol with 2.3 times its mass of absolute ethanol to prepare an ethylene glycol solution. Mix and grind kaolin and strontium acetate, pass through a 120-mesh sieve, then add polyvinyl alcohol solution, heat up to 66°C and seal and stir at this temperature for 2.3h, then add ethylene glycol solution, heat up to 79°C and hold at this temperature Heating and stirring at low temperature for 8 minutes, then ultrasonic treatment at this temperature for 26 minutes, the ultrasonic power is 800W, and then stirred at 99°C until dry, and then calcined in a muffle furnace at 450°C for 4.8h to obtain ...

Embodiment 2

[0020] In the embodiment of the present invention, a desulfurization adsorbent for gasoline is composed of the following raw materials in parts by weight: 35 parts of kaolin, 7 parts of strontium acetate, 21 parts of polyvinyl alcohol, and 13 parts of ethylene glycol.

[0021] Mix polyvinyl alcohol with 5.5 times its mass of deionized water to prepare a polyvinyl alcohol solution; mix ethylene glycol with 2.3 times its mass of absolute ethanol to prepare an ethylene glycol solution. Mix and grind kaolin and strontium acetate, pass through a 120-mesh sieve, then add polyvinyl alcohol solution, heat up to 66°C and seal and stir at this temperature for 2.3h, then add ethylene glycol solution, heat up to 79°C and hold at this temperature Heating and stirring under low temperature for 8 minutes, then ultrasonic treatment at this temperature for 26 minutes, the ultrasonic power is 800W, and then stirred at a temperature of 101°C until dry, and then calcined in a muffle furnace at 450...

Embodiment 3

[0023] In the embodiment of the present invention, a desulfurization adsorbent for gasoline is composed of the following raw materials in parts by weight: 29 parts of kaolin, 4 parts of strontium acetate, 15 parts of polyvinyl alcohol, and 7 parts of ethylene glycol.

[0024] Mix polyvinyl alcohol with 5.5 times its mass of deionized water to prepare a polyvinyl alcohol solution; mix ethylene glycol with 2.3 times its mass of absolute ethanol to prepare an ethylene glycol solution. Mix and grind kaolin and strontium acetate, pass through a 120-mesh sieve, then add polyvinyl alcohol solution, heat up to 66°C and seal and stir at this temperature for 2.3h, then add ethylene glycol solution, heat up to 79°C and hold at this temperature Heating and stirring at low temperature for 8 minutes, then ultrasonic treatment at this temperature for 26 minutes, the ultrasonic power is 800W, and then stirred at 100°C until dry, and then calcined in a muffle furnace at 450°C for 4.8h to obtain...

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Abstract

The invention discloses a desulfurization adsorbent for gasoline. The desulfurization adsorbent is prepared from, by weight, 27-35 parts of white clay, 3-7 parts of strontium acetate, 13-21 parts of polyving akohol and 5-13 parts of ethylene glycol. According to the desulfurization adsorbent for the gasoline, the white clay serves as a row material, after the white clay is mixed with the strontium acetate, then after the processing of the polyving akohol, the ethylene glycol and the like, the desulfurization adsorbent is prepared, the sulfur capacity is large, the selection for sulfur is good, the depth of desulfurization is high, and sulfur concentration after the desulfurization can reach 1 ppmw; besides, the service life is long and the adsorbent is environmentally friendly. The desulfurization adsorbent for the gasoline is simple in preparation process, easy to operate and control, stable in performance, low in production cost and suitable for industrial production. According to the desulfurization adsorbent, when the gasoline is desulfurized, the process operation conditions are mild, the desulfurization can be carried out at a normal pressure and a lower temperature, and therefore the energy consumption is saved, and the operation cost is reduced.

Description

technical field [0001] The invention relates to the technical field of desulfurization materials, in particular to a desulfurization adsorbent for gasoline. Background technique [0002] About 70% of my country's commercial gasoline comes from the heavy oil catalytic cracking process. Since heavy oil raw materials contain a large amount of sulfur, nitrogen, oxygen heteroatom compounds and colloidal asphaltenes, catalytic cracking gasoline not only has a high sulfur content, but also contains a large amount of olefin components , More than 90% of the sulfur in commercial gasoline comes from catalytic cracking gasoline, which makes the sulfur content of gasoline in my country far exceed that in foreign gasoline. Therefore, how to reduce the sulfur content in FCC gasoline is the key to reducing the sulfur content in commercial gasoline. In particular, on January 1, 2018, the National V gasoline quality standard that is about to be implemented nationwide stipulates that the sulf...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J20/26B01J20/30C10G25/00
CPCB01J20/26B01J2220/4806B01J2220/4812C10G25/003C10G2300/202
Inventor 不公告发明人
Owner ZHENGZHOU BEIDOU COMM TECH
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