Composite corrosion inhibitor for butyl rubber chloromethane glycol dehydration and regeneration system

A composite corrosion inhibitor and butyl rubber technology, which is applied in the field of composite corrosion inhibitors, can solve the problems of high rise and unobvious break of hydrolysis balance of methyl chloride, and achieve the effect of reducing corrosion rate and solving corrosion

Active Publication Date: 2012-08-29
CHINA PETROLEUM & CHEM CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Of course, due to the existence of hydrogen ions and chloride ions in the system, the corrosion of the system is unavoidable, and the corrosion will break the hydrolysis balance of methyl chloride. Since the composite corrosion inhibitor is added in the system, the hydrolysis balance of methyl chloride is not obvious, and the concentration of chloride ions and iron ions To increase the amount, chlorine ions and iron ions can be kept at a certain level by replacing a small amount of glycol solution in the system; but if there is no composite corrosion inhibitor, because the reaction between hydrochloric acid and carbon steel is always going on, the hydrolysis balance of methyl chloride It has been breaking down, resulting in the increase of chloride and iron ions in the system

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] Add concentrated hydrochloric acid to the triethylene glycol solution to make the chloride ion in the triethylene glycol solution 6000 mg / L, then add 2-mercaptobenzothiazole, N-benzylimidazole and 4-benzylpyridine respectively to make it in the triethylene glycol solution The concentration in alcohol is 2000mg / L, 8000mg / L, 10000mg / L respectively, the temperature is raised to 160°C, and the corrosion rate is measured after 4h.

Embodiment 2

[0043] Add concentrated hydrochloric acid in the triethylene glycol solution to make the chloride ion in the triethylene glycol solution be 6000mg / L, then add 2-ethyl-4-methylimidazole, 2-benzylpyridine and benzopyrrole respectively, make it in The concentrations in triethylene glycol were 3000mg / L, 5000mg / L, and 2000mg / L respectively, and the temperature was raised to 160°C, and the corrosion rate was measured after 4 hours.

Embodiment 3

[0045] Add concentrated hydrochloric acid to the triethylene glycol solution to make the chloride ion in the triethylene glycol solution 6000mg / L, then add 3,5-diphenylpyrazole and cetyl bromide respectively to make it The concentrations in the solution were 5000mg / L and 30000mg / L respectively, the temperature was raised to 160°C, and the corrosion rate was measured after 4 hours.

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PUM

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Abstract

The invention relates to a composite corrosion inhibitor for a butyl rubber chloromethane glycol dehydration and regeneration system. The composite corrosion inhibitor comprises at least two compounds, wherein the compounds are selected from heterocyclic compounds; the heterocyclic compounds are selected from nitrogen heterocyclic compounds and sulfur heterocyclic compounds, preferably the compounds are all selected from the nitrogen heterocyclic compounds, or the nitrogen heterocyclic compounds and the sulfur heterocyclic compounds; the nitrogen heterocyclic compounds are selected from a pyrrole compound, an imidazole compound, a pyrazol compound, a pyridine compound, a pyrazine compound, a miazine compound, a quinoline compound, an isoquinoline compound and a benzotriazole compound; and the sulfur heterocyclic compounds are thiazole compounds. According to the composite corrosion inhibitor, the problem of system corrosion due to accumulation of hydrochloric acid in the chloromethane glycol dehydration system can be effectively solved.

Description

[0001] This application is a divisional application of 200910087787.9, and its filing date is: June 26, 2009. The name of the invention is: a composite corrosion inhibitor for butyl rubber chloride methane glycol dehydration regeneration system. technical field [0002] The present invention relates to a composite corrosion inhibitor for butyl rubber methyl chloride glycol dehydration regeneration system, in particular to a key solution to the problem of methyl chloride dehydration in butyl rubber production equipment when glycol is used to remove trace water in methyl chloride Hydrolysis of glycol produces hydrochloric acid, which causes system corrosion. Background technique [0003] The production process of butyl rubber is generally produced by low-temperature slurry polymerization using methyl chloride as a solvent, using high-purity isobutylene and isoprene as raw materials, using high-purity methyl chloride as a diluent, and using aluminum trichloride as a catalyst. T...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C23F11/04C08F210/12
Inventor 华炜任志峰郦和生
Owner CHINA PETROLEUM & CHEM CORP
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