Formula and preparation method of low-carbon lubricating oil

A lubricating oil and formula technology, applied in the field of lubricating oil, can solve the problems of reducing the service life of three-way catalytic converters in automobiles, high fuel consumption, and affecting air quality, and achieves improved shear stability and anti-oxidation stability, Strengthen the utilization rate of energy and solve the effect of high temperature and oxidation resistance

Active Publication Date: 2014-02-12
TIANJIN LINXAN PETROCHEM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, it is often necessary to add a large amount of ZDDP (sulfur-zinc-butyloctyl zinc salt) to the traditional lubricating oil, and use the anti-oxidation, anti-wear, and anti-corrosion effects of ZDDP to control the oxidation degree of the lubricating oil, but the resulting carbon emissions It is also conceivable that it not only causes photochemical effects, but also greatly reduces the service life of the three-way catalytic converter of the car, which has an extremely adverse impact on air quality, making the lubricating oil less effective after 5,000 to 10,000 kilometers of use far from ideal
Although the upgrade of engine oil specifications is accelerating, it is far behind the rapid development of engines. Modern engines are small in size, high in speed, high in pressure, and high in power, but there are still problems such as excessive carbon deposits, high fuel consumption, and oil change. A series of problems such as short lifespan and large wear and tear are likely to cause damage to the engine. After the body is lightweight, the model is economical, and the combustion is efficient, how to improve lubricating oil products in order to improve the operating efficiency of the car, protect key components such as the engine, and realize The purpose of automobile energy saving and emission reduction has become a hot spot in the research of lubricating oil formulation

Method used

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  • Formula and preparation method of low-carbon lubricating oil
  • Formula and preparation method of low-carbon lubricating oil
  • Formula and preparation method of low-carbon lubricating oil

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0038] Example 1: 30 parts of synthetic base oil (a mixture of synthetic base oil PAO-10 and synthetic base oil PAO-6, the contents of which are 20 parts and 10 parts respectively), three types of hydrogenation are added in the blending equipment by weight percentage 38 parts of base oil (a mixture of three types of hydrogenated base oil 250N and 150N+, the content is 25 parts and 13 parts respectively), the second type of hydrogenated base oil 500N is 15 parts, and the fifth type of synthetic phenolic ester base oil 0810 is 12 parts 5 parts, hydrogenated base oil 150BS is 5 parts, heat up to 60 ℃, keep constant temperature, stir and reconcile evenly within 40 minutes;

[0039] Then add 9.0 parts of viscosity index improver, high molecular weight phenolic ester ashless antioxidant: 3.0 parts, liquid mixed dialkyl diphenylamine: 2.8 parts; 803 pour point depressant: 0.3 parts, molybdenum salt friction reducer: 0.5 parts, Amino sulfide ester: 1.6 parts, boronated ashless dispers...

Embodiment 2

[0044] Example 2: 10 parts of synthetic base oil (a mixture of synthetic base oil PAO-10 and synthetic base oil PAO-6, each containing 5 parts), three types of hydrogenated base oil 50 parts were added in the blending equipment by weight percentage Parts (a mixture of three types of hydrogenated base oils 250N and 150N+, the contents are 20 parts and 30 parts respectively), two types of hydrogenated base oils 500N are 22 parts, five types of synthetic phenolic ester base oils 0810 are 10 parts, plus The hydrogen base oil 150BS is 8 parts, and the temperature is raised to 60°C to maintain a constant temperature and evenly adjust;

[0045] Then add 9.0 parts of viscosity index improver, high molecular weight phenolic ester ashless antioxidant: 1.5 parts, liquid mixed dialkyl diphenylamine: 2.5 parts; 803 pour point depressant: 0.3 parts, molybdenum salt friction reducer: 0.2 parts, Amino sulfide ester: 1.6 parts, boronated ashless dispersant: 1.0 parts, sulfurized calcium alkylp...

Embodiment 3

[0050] Example 3: 5 parts of synthetic base oil (a mixture of synthetic base oil PAO-10 and synthetic base oil PAO-6, each containing 2.5 parts), three types of hydrogenated base oil 55 parts were added to the blending equipment by weight percentage Parts (a mixture of three types of hydrogenated base oils 250N and 150N+, the contents are 25 parts and 20 parts respectively), two types of hydrogenated base oils 500N are 20 parts, five types of synthetic phenolic ester base oils 0810 are 10 parts, plus After the hydrogen base oil 150BS is 10 parts, the temperature is raised to 60°C, and the temperature is maintained at a constant temperature, and the mixture is uniform within 40 minutes;

[0051] Then add 9.0 parts of viscosity index improver, high molecular weight phenolic ester ashless antioxidant: 1.5 parts, liquid mixed dialkyl diphenylamine: 2.5 parts; 803 pour point depressant: 0.3 parts, molybdenum salt friction reducer: 0.2 parts, Amino sulfide ester: 1.6 parts, boronate...

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Abstract

The invention provides a formula and a preparation method of low-carbon lubricating oil. The formula is characterized by comprising the following components in parts by weight: 5 to 30 parts of synthetic base oil, 35 to 55 parts of III-type hydrogenated base oil, 15 to 22 parts of II-type hydrogenated base oil, 8 to 15 parts of V-type synthetic phenolic ester base oil, 5 to 15 parts of hydrogenated base oil 150BS and the balance of additives. The preparation method comprises the following steps of adding the base oil in parts by weight into blending equipment, raising temperature to 60 DEG C, and uniformly blending the base oil at constant temperature; sequentially adding various additives, raising the temperature to 70 to 75 DEG C (not more than 75 DEG C), stirring the base oil and the additives within 40 minutes at constant temperature to completely mix the base oil and the additives, and performing circulating filtration and cooling in four stages to obtain the low-carbon lubricating oil. The formula and the preparation method thereof have the beneficial effects that the limit of soot content is reduced; the low-carbon lubricating oil is energy-saving, low-phosphorus, environment-friendly, high in abrasion resistance and resistant to high temperature and high load; the high-temperature detergency is greatly improved; the carbon emission of the lubricating oil is effectively reduced.

Description

technical field [0001] The invention belongs to the technical field of lubricating oil, and in particular relates to a low-carbon lubricating oil formula and a preparation method thereof. Background technique [0002] Low-carbon economy has recently attracted much attention in China. China is a major polluter in the world. Both the European Union and the United States have threatened to impose "carbon tariffs", which is undoubtedly unfavorable to China, a major exporter in the world. The content of sulfur and phosphorus components in lubricating oil directly determines the carbon content emitted. Because the sulfur dioxide produced by the use of lubricating oil has an obvious synergistic effect on reducing greenhouse gas emissions, the lubricating oil industry has actually been a major contributor to carbon emissions. According to calculations, the benefit coefficient between sulfur dioxide and carbon dioxide is 1:38, that is, every 10,000 tons of sulfur dioxide emission r...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C10M169/04C10M161/00C10M167/00C10M177/00C10N30/12C10N30/10C10N30/04
Inventor 耿刚
Owner TIANJIN LINXAN PETROCHEM
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