Method for preparing highly active light-burned magnesia in fixed-bed-fluidized-bed multi-fluid state

A light-burned magnesia and fluidized bed technology, applied in the field of metallurgy, can solve problems such as uneven quality of light-burned magnesia, short residence time, and incomplete decomposition of magnesite
CN109052997BActive Publication Date: 2021-05-18UNIV OF SCI & TECH LIAONING

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
UNIV OF SCI & TECH LIAONING
Publication Date
2021-05-18

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Abstract

The invention relates to a method for preparing high-activity light-burned magnesia in a fixed bed-fluidized bed multi-fluid state, using magnesite with a particle size of 30-300 mm as raw material, and sending the magnesite to a fixed bed for calcining and decomposition through a feeding system The massive magnesite decomposes into smaller chunks and powders, and 10-80% of the magnesite undergoes a decomposition reaction, which is decomposed in an accumulation state; the material particles from the fixed bed calcining and decomposition furnace are passed through The pipeline is sent to the fluidized bed boiling state decomposition furnace, so that the material particles are in a boiling state, and the undecomposed magnesite can continue to decompose in the process of simmering in the fluidized bed boiling state decomposition furnace. This decomposition reaction is boiling state decomposition; completely The decomposed light-burned magnesia enters the cooling device through the pipeline along with the hot flue gas and is collected from the discharge port after being cooled. The material presents a multi-fluid combination in the whole process. This multi-fluid combination is conducive to the full progress of the decomposition reaction of magnesite, which can ensure that the decomposition rate of magnesite is greater than 99%, and the product quality is uniform and stable.
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Description

technical field

[0001] The invention relates to the technical field of metallurgy, in particular to a method for preparing high-activity light-burned magnesia in a fixed bed-fluidized bed multi-fluid state. Background technique

[0002] Magnesite is one of my country's advantageous mineral resources, with a total reserve of more than 3 billion tons, accounting for a quarter of the world's magnesite reserves and ranking first in the world. Light-burned magnesia produced by calcination of magnesite is the most productive magnesia material. The annual production capacity of light-burned magnesia in my country is over 10 million tons. Light-burned magnesia has excellent alkali resistance and electrical insulation, strong adsorption capacity, high thermal conductivity, and large thermal expansion coefficient. It is widely used in metallurgy, building materials, and national defense. It is also an important industrial raw material. Its downstream products include: High-grade refr...

Claims

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