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Fuel oil additive with cleaning effect and preparation method thereof

A cleaning effect and additive technology, applied in the direction of fuel additives, separation methods, chemical instruments and methods, etc., can solve the problem of single function and achieve the effect of improving stability

Pending Publication Date: 2019-07-19
贵州贵和隆醇基燃油开发有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The technical problem to be solved by the present invention is to provide a fuel additive with cleaning effect and its preparation method, so as to solve the problem that the current fuel additive has a relatively single function and cannot provide a reliable solution for the combustion problems of automobile engines facing various situations. problem solving measures

Method used

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  • Fuel oil additive with cleaning effect and preparation method thereof
  • Fuel oil additive with cleaning effect and preparation method thereof
  • Fuel oil additive with cleaning effect and preparation method thereof

Examples

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Comparison scheme
Effect test

Embodiment 1

[0026] Embodiment 1: the preparation of fuel additive of the present invention:

[0027] Raw material ratio: 60kg of ethylene glycol with a concentration of 96%, 1kg of industrial glycerin, 1kg of kitchen oil, 1kg of n-butanol, 1kg of artemisia annua oil, and 0.2kg of wormwood oil.

[0028] Preparation:

[0029] Step 1. Mix n-butanol, kitchen oil and industrial glycerin and pour them into a closed reaction kettle for stirring reaction. The speed of the closed reaction kettle is 3000r / min, and the reaction time is 8h;

[0030] Step 2: After stopping the reaction in the closed reactor, transfer the mixed solution in the closed reactor and let it stand for 10 hours, then filter and separate the mixed solution to obtain the ethyl alcohol produced during the stirring reaction process of n-butanol, kitchen oil and industrial glycerin. Diamine;

[0031] Step 3, mixing and stirring the ethylenediamine obtained in step 2 with artemisia annua oil and wormwood oil; the stirring speed i...

Embodiment 2

[0033] Embodiment 2: the preparation of fuel additive of the present invention:

[0034] Raw material ratio: 90kg of ethylene glycol with a concentration of 96%, 5kg of industrial glycerin, 5kg of kitchen oil, 3kg of n-butanol, 3kg of artemisia annua oil, and 0.8kg of wormwood oil.

[0035] Preparation:

[0036] Step 1. Mix n-butanol, kitchen oil and industrial glycerin and pour them into a closed reaction kettle for stirring reaction. The speed of the closed reaction kettle is 3200r / min, and the reaction time is 14h;

[0037] Step 2: After stopping the reaction in the closed reactor, transfer the mixed solution in the closed reactor and let it stand for 10 hours, then filter and separate the mixed solution to obtain the ethyl alcohol produced during the stirring reaction process of n-butanol, kitchen oil and industrial glycerin. Diamine;

[0038] Step 3, mixing and stirring the ethylenediamine obtained in step 2 with artemisia annua oil and wormwood oil; the stirring speed ...

Embodiment 3

[0040] Embodiment 3: the preparation of fuel additive of the present invention:

[0041] Raw material ratio: 75kg of ethylene glycol with a concentration of 96%, 3kg of industrial glycerin, 3kg of kitchen oil, 2kg of n-butanol, 2kg of artemisia annua oil, and 0.5kg of wormwood oil.

[0042] Preparation:

[0043] Step 1. Mix n-butanol, kitchen oil and industrial glycerin and pour them into a closed reaction kettle for stirring reaction. The speed of the closed reaction kettle is 3000r / min, and the reaction time is 10h;

[0044] Step 2: After stopping the reaction in the closed reactor, transfer the mixed solution in the closed reactor and let it stand for 10 hours, then filter and separate the mixed solution to obtain the ethyl alcohol produced during the stirring reaction process of n-butanol, kitchen oil and industrial glycerin. Diamine;

[0045] Step 3, mixing and stirring the ethylenediamine obtained in step 2 with artemisia annua oil and wormwood oil; the stirring speed ...

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Abstract

The invention discloses a fuel oil additive with a cleaning effect, and belongs to the technical field of petrochemical additives. The fuel oil additive comprises the following raw materials in partsby weight: 60-90 parts of ethylene glycol, 1-5 parts of industrial glycerol, 1-5 parts of kitchen oil, 1-3 parts of n-butyl alcohol, 1-3 parts of artemisia apiacea oil and 0.2-0.8 part of Artemisia argyi oil. The invention further discloses a preparation method of the fuel oil additive. The preparation method comprises the following steps of 1, mixing n-butyl alcohol, kitchen oil and industrial glycerol together, and pouring the formed mixture into a closed reaction kettle for a stirring reaction, wherein the stirring rotation speed is 2000-3500 r / min, and the stirring time is 4-24 h; 2, conducting standing for 10 hours or more after a stirring machine stops rotating, and then filtering and separating substances in the stirring machine to obtain ethylenediamine generated in the stirring reaction process of n-butanol, kitchen oil and industrial glycerol; 3, mixing and stirring the ethylenediamine obtained in the step 2 with artemisia apiacea oil and Artemisia argyi oil, wherein the stirring rotating speed is 4500 to 5500 r / min; and 4, adding ethylene glycol into the mixed solution obtained in the step 3, and conducting standing, so as to obtain the fuel oil additive after the ethylene glycol and the mixed solution are completely dissolved and mixed.

Description

technical field [0001] The invention relates to the technical field of petrochemical additives, in particular to a fuel additive with cleaning effect and a preparation method thereof. Background technique [0002] When the fuel is burning, the unstable components in it are prone to oxidative condensation reactions, resulting in the production of colloid and carbon deposits, which are deposited on the parts of the car engine, and the deposits on the intake valves are likely to cause the cross-section of the intake passage to decrease, and the intake air The efficiency is low and the power is reduced; and the deposits in the fuel injection nozzle will make the fuel injection poor and the fuel atomization quality will be reduced, making it difficult for the fuel to burn completely after entering the combustion chamber, resulting in difficulty in starting the engine and increasing fuel consumption , Exhaust emissions deteriorate; the invention of fuel additives that can clean th...

Claims

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Application Information

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IPC IPC(8): C10L1/182C10L1/18C10L1/14C10L10/18B01J19/18B01J19/00B01F13/10B01F15/00B01F15/02B01D36/04B01D36/00
CPCC10L1/14C10L10/18B01J19/18B01J19/00B01D36/04B01D36/00C10L2290/24C10L2290/547C10L1/1826C10L1/1802C10L1/1824B01F33/80B01F35/187B01F35/71
Inventor 陈中志童开贵
Owner 贵州贵和隆醇基燃油开发有限公司
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