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Gas-reducing inhibitor of methyl gasoline

A methanol gasoline and degassing technology, which is applied in the petroleum industry, fuel additives, liquid carbon-containing fuels, etc., can solve the problems of insufficient use effect, and achieve the effects of good effect, increased process and cost, and convenient use.

Inactive Publication Date: 2010-02-17
占小玲
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It is very feasible and effective to reduce the saturated vapor pressure of base gasoline and provide room for the addition of methanol. However, there are limitations in the resource limitation of heavy-duty gasoline and the general promotion in regions. In addition, the addition of heavy-duty gasoline has a negative impact on automobile cooling. Starting will be affected to a certain extent; for example, the journal "Automotive Engine" No. 3, June 2008, published "Study on Evaporation and Air Locking Tendency of Methanol Gasoline", the author is Xu Shihai from the School of Logistics Engineering, etc., the article expounds the basic gasoline After adding methanol, the saturated vapor pressure increases significantly, and air lock may occur when used at high temperatures. The reason is that certain components in methanol and gasoline form a low-boiling azeotrope; Methanol Fuel" invention patent discloses that vapor pressure regulators are methyl ethyl ketone, methyl propionate, propyl formate, methanol isobutyl ester, dipropyl ether, and cyclohexane. Adding 0.2% has a great effect on suppressing the saturated vapor pressure of methanol gasoline Good adjustment effect, but 0.2% dosage will affect the cold start tendency of methanol gasoline, this side effect can not be ignored for the use of methanol gasoline; such as the invention patent of "a multifunctional alcohol fuel additive" with the announcement number CN101285010A , it is disclosed that the vapor pressure inhibitor is 1-15 parts of ethyl formate or acetoacetate, which has a positive effect on suppressing the saturated vapor pressure of methanol gasoline, but the fly in the ointment is a single agent, and its use effect is not as good as that of compounding

Method used

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  • Gas-reducing inhibitor of methyl gasoline

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] A kind of methanol gasoline vapor drag reducing agent, its component and weight percent are as follows:

[0019] Fatty Ketones 80%

[0020] Morpholines 12%

[0021] Fatty aldehyde 5%

[0022] Fatty ether 3%

[0023] Among them: the aliphatic ketone is methyl tert-butyl ketone; the morpholines are morpholine; the aliphatic aldehyde is isovaleraldehyde; the aliphatic ether is dibutyl ether.

[0024] A vapor drag reducing agent for methanol gasoline, its preparation method is as follows: first add methyl tert-butyl ketone into the blending kettle, add morpholine, isovaleraldehyde, and dibutyl ether respectively while stirring, and mix well to form a transparent liquid That is the finished product of the present invention.

Embodiment 2

[0026] A kind of methanol gasoline vapor drag reducing agent, its component and weight percent are as follows:

[0027] Fatty Ketones 82%

[0028] Morpholines 6%

[0029] Fatty aldehyde 8%

[0030] Fatty ether 4%

[0031] Among them: the aliphatic ketone is dimethyl ethylene diketone; the morpholines are N-methylmorpholine; the aliphatic aldehyde is isobutyraldehyde; the aliphatic ether is diisopropyl ether.

[0032] A methanol-gasoline air drag reducing agent, the preparation method of which is the same as in Example 1.

Embodiment 3

[0034] A kind of methanol gasoline vapor drag reducing agent, its component and weight percent are as follows:

[0035] Fatty Ketones 86%

[0036] Morpholines 4%

[0037] Fatty aldehyde 4%

[0038] Fatty ether 6%

[0039] Among them: aliphatic ketone is trimethylcyclohexanone; morpholine is N-ethyl morpholine; aliphatic aldehyde is octanal; aliphatic ether is diphenyl ether.

[0040] A methanol-gasoline air drag reducing agent, the preparation method of which is the same as in Example 1.

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PUM

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Abstract

The invention relates to the field of additives of alcohol ether substituted fuel for vehicles, in particular to a gas-reducing inhibitor of methyl gasoline. The gas-reducing inhibitor of methyl gasoline is prepared from 80-90 percent of aliphatic ketones, 4-12 percent of morpholine, 3-8 percent of aliphatic aldehyde and 2-6 percent of aliphatic ether. The compound formulation in the invention hasmore obvious effect than the prior art, has the prominent advantages of interactive effect and complement of each other, effectively inhibits the rise of saturated vapor pressure and reduces the gasresistance of the methyl gasoline. In the invention, the methyl gasoline can reach the national standard by directly adding the gas-reducing inhibitor without regulating the saturated vapor pressure of the base gasoline. The invention has the characteristics of easy production, low cost, favorable effect, high efficiency, convenient use, and the like, and has important practical value for wide promotion of the methyl gasoline.

Description

1. Technical field [0001] The invention belongs to the field of automobile alcohol ether substitute fuel additives, in particular to a methanol gasoline air drag reducing agent. 2. Background technology [0002] With the development of the automobile industry, the demand for fuel oil has risen sharply, especially the lack of oil resources, which has accelerated the research process of alternative fuels for automobiles in various countries. At present, methanol gasoline is the main alternative fuel for automobile engines. Methanol does not contain aromatics or sulfur, which is conducive to preventing air pollution and is beneficial to the environment. However, with the addition of methanol in gasoline, methanol gasoline enters the internal combustion engine in the state of injection during the operation of the car. After parking, due to the high internal temperature, it is difficult to drop down, methanol gasoline evaporates quickly, and a section is formed between the fuel t...

Claims

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Application Information

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IPC IPC(8): C10L1/233C10L1/185C10L1/02C10L10/00
Inventor 占小玲
Owner 占小玲
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