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Waste lubricant oil recovery utilization method

A waste lubricating oil, hydrogen-oil ratio technology, applied in the direction of lubricating compositions, etc., can solve the problem of not completely removing metal impurities in waste lubricating oil, not improving the yield of lubricating oil base oil, and not proposing the environment Friendly recovery technology and other issues, to achieve the effect of optimizing hydrofining effect, high catalyst utilization rate, improving processing capacity and device yield

Active Publication Date: 2010-09-15
CHINA PETROLEUM & CHEM CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, it is less effective in removing impurities such as metals, sulfur, nitrogen, etc., and the operating conditions are harsh, and a large amount of alkane solvent is wasted during extraction.
[0008] None of the existing waste lubricating oil recovery technologies has completely solved the removal of impurities such as metals in waste lubricating oil, neither proposed an ideal environment-friendly recovery technology, nor improved the yield of lubricating oil base oil well

Method used

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  • Waste lubricant oil recovery utilization method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1~2

[0027] Select a used waste gear oil. After long-term use, wear, corrosion and oxidation, etc., the main physical and chemical properties have changed greatly, which seriously affects the use of lubricating oil. The raw material properties of waste lubricating oil are shown in Table 1. :

[0028] Table 1 Basic properties of waste gear oil raw materials

[0029] nature

[0030] Neutralization value, mgKOH / g

[0031] It can be seen from the properties in the table that the viscosity, chroma, S, N, and CCR of this waste gear oil are relatively high, and the water content and oxidation stability are particularly high, which shows that the degree of oxidation of this gear oil is very deep; from mechanical impurities In terms of metals, Ca, Zn, Mg, Na, Fe, and Mn are quite high, and Mo, Cu, and Pb are also high, indicating that the wear and corrosion of mechanical parts during use is also very serious, and the additives added are also very high. It has been corro...

Embodiment 3~5

[0037] As shown in the figure, the oil product obtained after filtration, electric dehydration and desalination is mixed with H from pipeline 9 2 After mixing, enter the fluidized bed reactor 10 equipped with a demetallization catalyst for hydrodemetallization reaction, the reaction temperature is 320-350°C, the reaction pressure is 8-12MPa, and the volume space velocity is 0.5-1.0h -1 Then enter the fluidized bed reactor 11 equipped with hydrofinishing agent, carry out hydrofinishing reaction, reaction temperature 270~320 ℃, reaction pressure 6~8MPa, volumetric space velocity 1.0~1.5h -1 Then enter distillation tower 13 by pipeline 12 and carry out distillation, and hydrogen returns to 9 and enters reactor by pipeline 14, can recycle; Qualified lubricating oil base oil is distilled out by extraction outlet 15. The hydrodemetallization catalyst used in the ebullating bed reactor 10 contains MoO 3 (weight) 8%, containing NiO (weight) 2%, the catalyst is a microsphere with a di...

Embodiment 6~7

[0044] The waste gear oil whose basic properties are shown in Table 1 is processed on the combined process of the present invention.

[0045] The waste gear oil enters the filter 3 from the storage tank 1 through the pump 2 for filtration, the filtration temperature is 120°C, and an 800-mesh filter screen is selected; after filtration, polyoxyethylene alkylamine and polyoxyethylene fatty acid ester are added through the pipeline 4 The compounded demulsifier, added in an amount of 20 μg / g, is mixed evenly and enters two series-connected electric dehydration and demetallization tanks 5 and 6. The electric field strength in the tank is 1000V / cm, and the metal-containing sewage after dehydration is released from 7 and 8; Waste oil after electro-dehydration and demetallization and H from pipeline 9 2 After mixing, it enters the ebullated bed reactor 10 equipped with a demetallization catalyst to carry out hydrodemetallization reaction; then enters the ebullated bed reactor 11 equip...

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Abstract

The invention discloses a reclamation method for waste lubricating oil, which is characterized in that the technologies such as filtering, electric dehydration demetalization, fluidized bed hydrotreating demetalization and fluidized bed hydrotreating refining are organically combined; and operating condition is optimized. Compared with the prior art, the method of the invention has the advantagesthat most impurity in the waste lubricating oil can be effectively removed; the properties such as chroma, oxidation stability and neutralization value are improved; simultaneously recovery rate of the lube base oil is improved, enabling recovery and effective use of waste lubricating oil.

Description

technical field [0001] The invention relates to a method for recycling waste lubricating oil. Background technique [0002] Waste lubricating oil mainly refers to the gradual aging and deterioration of lubricating oil due to high temperature and air oxidation during use, plus the metal powder rubbed off from the friction parts, respiration and other reasons entering the oil, water from the environment The intrusion of impurities and so on changes its physical and chemical properties. [0003] Waste lubricating oil can be used to produce other products, such as cracking to produce light diesel and gasoline products, and can also be recycled as lubricating oil base oil after treatment. The waste lubricating oil is processed through appropriate processes to remove the metamorphic dirt and impurities in the waste oil, and produce a base oil that meets the quality requirements. After further production and deployment of various additives, a finished lubricating oil with good qua...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C10M175/00
Inventor 刘建锟杨涛贾丽李鹤鸣贾永忠
Owner CHINA PETROLEUM & CHEM CORP
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