Fluidized calciner

US10280115B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10280115-B2
Application numberUS-201314441353-A
CountryUS
Kind codeB2
Filing dateDec 25, 2013
Priority dateDec 26, 2012
Publication dateMay 7, 2019
Grant dateMay 7, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A fluidized calciner is provided which allows a reduction in the rate of unburned fuel at an outlet of a fluidized calciner to enable sufficient calcination while preventing possible occlusion in a preheater, even when pulverized coal of coal or coke, which has low combustion quality, is used as fuel, based on calculations in accordance with computational fluid dynamics based on the shape of an actual furnace and operational conditions. The present invention provides a fluidized calciner including a tubular furnace body ( 2 ) in which an axial direction is an up-down direction, a pulverized coal blowing line ( 3 ) through which fuel is blown into the furnace body ( 2 ), a raw material chute ( 4 ) through which a cement raw material is loaded into the furnace body ( 2 ), at least one air introduction pipe ( 5 ) through which introduced air is sucked, the pulverized coal blowing line ( 3 ), the raw material chute ( 4 ), and the air introduction pipe ( 5 ) being connected to a side portion of the furnace body ( 2 ), and a fluidizing air blowing port ( 6 ) disposed at a bottom portion of the furnace body ( 2 ) and through which fluidizing air is blown into the furnace body ( 2 ), in which a blowing port of the pulverized coal blowing line ( 3 ) is disposed below a suction port of the air introduction pipe ( 5 ) and above the fluidizing air blowing port ( 6 ).

First claim

Opening claim text (preview).

The invention claimed is: 1. A fluidized calciner comprising a tubular furnace body in which an axial direction thereof is an up-down direction, a pulverized coal blowing line through which fuel is blown into the furnace body, a raw material chute through which a cement raw material is loaded into the furnace body, at least one air introduction pipe comprising an air inlet through which air enters the air introduction pipe and a suction port through which air is introduced into the calciner, the pulverized coal blowing line, the raw material chute, and the air introduction pipe being connected to a side portion of the furnace body, and a fluidizing air blowing port disposed at a bottom portion of the furnace body and through which fluidizing air is blown into the furnace body, wherein a blowing port of the pulverized coal blowing line is connected to the furnace body perpendicular to a shaft center line thereof so as to extend toward the center of the furnace body and the center of the blowing port of the pulverized coal blowing line is disposed in alignment with the center of the air introduction pipe with respect to the vertical direction, and the blowing port of the pulverized coal blowing line is disposed below the suction port of the air introduction pipe, and wherein the center of the blowing port of the pulverized coal blowing line is disposed at a position 200 mm away from the fluidizing air blowing port and at a position of 35 to 145° from a center of a loading port of the raw material chute with respect to a circumferential direction of the furnace body. 2. A fluidized calciner comprising a tubular furnace body in which an axial direction thereof is an up-down direction, a pulverized coal blowing line through which fuel is blown into the furnace body, a raw material chute through which a cement raw material is loaded into the furnace body, at least one air introduction pipe comprising an air inlet through which air enters the air introduction pipe and a suction port through which air is introduced into the calciner, the pulverized coal blowing line, the raw material chute, and the air introduction pipe being connected to a side portion of the furnace body, and a fluidizing air blowing port disposed at a bottom portion of the furnace body and through which fluidizing air is blown into the furnace body, wherein a blowing port of the pulverized coal blowing line is connected to the furnace body perpendicular to a shaft center line thereof so as to extend toward the center of the furnace body and the center of the blowing port of the pulverized coal blowing line is disposed in alignment with the center of the air introduction pipe with respect to the vertical direction, and the blowing port of the pulverized coal blowing line is disposed below the suction port of the air introduction pipe, and wherein the center of the blowing port of the pulverized coal blowing line is disposed at a position at least 350 mm away from the fluidizing air blowing port and at a position of 90 to 145° from a center of a loading port of the raw material chute with respect to a circumferential direction of the furnace body. 3. A fluidized calciner comprising a tubular furnace body in which an axial direction thereof is an up-down direction, a pulverized coal blowing line through which fuel is blown into the furnace body, a raw material chute through which a cement raw material is loaded into the furnace body, at least one air introduction pipe comprising an air inlet through which air enters the air introduction pipe and a suction port through which air is introduced into the calciner, the pulverized coal blowing line, the raw material chute, and the air introduction pipe being connected to a side portion of the furnace body, and a fluidizing air blowing port disposed at a bottom portion of the furnace body and through which fluidizing air is blown into the furnace body, wherein a blowing port of the pulverized coal blowing line is connected to the furnace body perpendicular to a shaft center line thereof so as to extend toward the center of the furnace body and the center of the blowing port of the pulverized coal blowing line is disposed in alignment with the center of the air introduction pipe with respect to the vertical direction, and the blowing port of the pulverized coal blowing line is disposed below the suction port of the air introduction pipe, and wherein the center of the blowing port of the pulverized coal blowing line is disposed at a position at least 200 mm away from the fluidizing air blowing port and at a position of 100 to 120° from a center of a loading port of the raw material chute with respect to a circumferential direction of the furnace body.

Assignees

Inventors

Classifications

  • Preheating with addition of fuel, e.g. calcining · CPC title

  • F27B15/14Primary

    Arrangements of heating devices · CPC title

  • C04B7/45Primary

    in fluidised beds {, e.g. spouted beds} · CPC title

  • Arrangements of air or gas supply devices · CPC title

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What does patent US10280115B2 cover?
A fluidized calciner is provided which allows a reduction in the rate of unburned fuel at an outlet of a fluidized calciner to enable sufficient calcination while preventing possible occlusion in a preheater, even when pulverized coal of coal or coke, which has low combustion quality, is used as fuel, based on calculations in accordance with computational fluid dynamics based on the shape of an…
Who is the assignee on this patent?
Mitsubishi Materials Corp
What technology area does this patent fall under?
Primary CPC classification F27B15/14. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue May 07 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).