Air-cooled dedusting system of biomass granulator

A technology of biomass particle and dust removal system, which is applied in the direction of removing smoke and dust, die extrusion granulation, press, etc., can solve the problems of threatening the service life of ring die, lack of effective lubrication of pressure roller, and large damage of pressure roller bearing. , to achieve the effect of improving the service life and granulation output, good economic and social benefits, and meeting the requirements of energy saving and emission reduction

Inactive Publication Date: 2010-05-05
溧阳市华生机械厂
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] 1. The thermal expansion coefficient of the granulation ring die is relatively large, up to about 5 mm. Repeating this many times will easily lead to the rupture of the ring die, which seriously threatens the service life of the ring die;
[0005] 2. The temperature of the ring die is too high, so that the material is easily carbonized in the ring die hole, resulting in blockage of the ring die hole or becoming a dead hole without discharging, and the granulation output is low;
[0006] 3. When the temperature of the granulation chamber is too high, the bearing of the pressure roller will b

Method used

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  • Air-cooled dedusting system of biomass granulator
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  • Air-cooled dedusting system of biomass granulator

Examples

Experimental program
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Effect test

Embodiment 1

[0036] This embodiment realizes the air-cooling mode that the upper part of the granulation chamber 4 draws air and the lower part takes in air.

[0037] An air-cooled dust removal system for a biomass particle granulator is used to form a gas convection environment in the granulation chamber 4, which includes a granulation chamber 4, and a discharge port 5 is provided at the lower end of the granulation chamber 4, and is characterized in that the The granulation chamber 4 is provided with at least one air duct 6, and the corresponding position of the opening of the air duct 6 is provided with a heat dissipation hole 7, and the heat dissipation hole 7 can be provided through a sieve plate or a screen mesh.

[0038] The air pipe 6 is connected to the exhaust equipment through the air delivery pipeline 8, and the exhaust equipment is a cyclone separator 10 or a negative pressure blower. The air pipe 6 is used as an air outlet, and the discharge port 5 at the lower end of the gra...

Embodiment 2

[0040] This embodiment realizes the air-cooling mode of air intake from the upper part of the granulation chamber 4 and exhaust air from the lower part.

[0041] An air-cooled dust removal system for a biomass particle granulator is used to form a gas convection environment in the granulation chamber 4, which includes a granulation chamber 4, and a discharge port 5 is provided at the lower end of the granulation chamber 4, and is characterized in that the The granulating chamber 4 is provided with a cooling hole 7, which can be a relatively large opening, or can be provided through a sieve plate or a screen.

[0042] The discharge port 5 is connected to the airtight cabin 13, and the airtight cabin 13 is provided with a main air delivery pipe 9, and the main air delivery pipe 9 is connected to the ventilation equipment.

[0043] The cooling hole 7 is used as the air inlet of the upper part, and the discharge port 5 at the lower end of the granulation chamber 4 is used as the a...

Embodiment 3

[0045] This embodiment realizes the air-cooling mode in which the upper part of the granulation chamber 4 blows air and the lower part blows air.

[0046] An air-cooled dust removal system for a biomass particle granulator is used to form a gas convection environment in the granulation chamber 4, which includes a granulation chamber 4, and a discharge port 5 is provided at the lower end of the granulation chamber 4, and is characterized in that the The granulation chamber 4 is provided with at least one air duct 6 .

[0047] The air duct 6 is directly connected to the blast equipment through the air delivery pipeline 8, and the blast equipment is a blower fan. The air duct 6 is used as a blowing outlet, and the discharge port 5 at the lower end of the granulation chamber 4 is used as an air outlet to realize the air-cooling mode in which the upper part is blasted and the lower part is discharged.

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Abstract

An air-cooled dedusting system of a biomass granulator is used for forming air convection environment in a granulation room (4). The air-cooled dedusting system of the biomass granulator comprises the granulation room (4), of which the lower end is provided with a discharging opening (5); the air-cooled dedusting system of the biomass granulator is characterized in that the granulation room (4) is provided with at least one air opening, the air opening and/or the discharging opening (5) are connected to a blasting device or a drafting device. The inventive air-cooled dedusting system of the biomass granulator utilizes wind-force to produce air flow in the granulation room, can effectively temperature in the granulation room by the air-cooled form, realize cold pressing forming, and simultaneously dedust the fly ash and powder bits produced in the granulation process and recycle the discharged powder, thus saving cost, greatly enhancing service life of the granulator and yield of granulation, which is a significant renovation in the field of granulation.

Description

[0001] The application of this case is to apply for both a utility model patent and an invention patent for this invention on the same day. The name of the invention is the air-cooled dust removal system for biomass granulator. technical field [0002] The invention relates to the field of biomass granulation, in particular to an air-cooled dust removal system for a biomass granulator. Background technique [0003] At present, in the production process of biological pellets, in the granulation chamber of the granulator, the material and the mold generate high pressure and friction, which makes the material and the mold generate high temperature, so that the temperature in the granulation chamber is usually between 150°C and 350°C. , which is a serious hazard to granulation machinery and granulation quality: [0004] 1. The thermal expansion coefficient of the granulation ring die is relatively large, up to about 5 mm. Repeating this many times will easily lead to the rupture...

Claims

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Application Information

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IPC IPC(8): B01J2/22B08B15/04
CPCB30B11/201B30B15/0082
Inventor 耿福生耿震华
Owner 溧阳市华生机械厂
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