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Combined group-overlapped biomass power generation/chemical extraction coproduction device

A biomass power generation and chemical technology, applied in the direction of biofuel, petroleum industry, special dry distillation, etc., can solve the problems of not much improvement, high recycling cost, difficult separation, etc., achieve good effect, high production efficiency, and separation effect Good results

Inactive Publication Date: 2012-04-11
湖州富升炭业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, the combustion process, the most critical step in the charcoal production process, has not been improved much. The combustion process will produce a large amount of harmful exhaust gas. These exhaust gases contain a large amount of flammable components. They are excellent fuels and excellent chemical raw materials. A lot of heat, and in the traditional process, the chemical raw materials and flammable components included in the waste gas are mixed together, the separation is difficult, the recovery cost is high, and the waste gas treatment needs to be carried out after the combustion is completed, which increases the process and increases the cost

Method used

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  • Combined group-overlapped biomass power generation/chemical extraction coproduction device
  • Combined group-overlapped biomass power generation/chemical extraction coproduction device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] A combined stack biomass power generation and chemical extraction co-production device, including a sealed furnace body 1, the furnace body 1 is provided with ten combustion units, all combustion units are arranged in two rows, five in each row, and each combustion unit includes combustion Cavity 2, the feeding chamber 3 is set under the combustion chamber 2, the bottom of the feeding chamber 3 is provided with a feeding track 31, and a feeding device is arranged on the feeding track 31, and the feeding device includes a plurality of mobile platforms mounted on the feeding track 31 32. The mobile platform 32 is provided with a lifting device, the lifting device includes a lifting cylinder 33 fixedly arranged on the mobile platform 32, the piston rod of the lifting cylinder 33 is fixedly installed with a loading platform, and a carbon making box 34 is placed on the loading platform; The lower part of the combustion chamber 2 is provided with a one-way bayonet for clamping...

Embodiment 2

[0030] The difference from Embodiment 1 is that five treatment layers are arranged in the combustion chamber 2, and when the charcoal making box 34 is located on the first floor, the temperature is 80 degrees; when the charcoal making box 34 is located on the second floor, The temperature is 200 degrees; when the charcoal making box 34 is on the third floor, the temperature is 300 degrees; when the charcoal making box 34 is on the fourth floor, the temperature is 400 degrees; when the charcoal making box 34 is on the fifth floor, the temperature is 450 degrees.

Embodiment 3

[0032] The difference from Embodiment 1 is that seven treatment layers are arranged in the combustion chamber 2, and when the charcoal making box 34 is located on the first floor, the temperature is 80 degrees; when the charcoal making box 34 is located on the second floor, The temperature is 100 degrees; when the charcoal making box 34 is on the third floor, the temperature is 200 degrees; when the charcoal making box 34 is on the fourth floor, the temperature is 250 degrees; when the charcoal making box 34 is on the fifth floor, the temperature is 300 degrees; when the charcoal making box 34 is located on the sixth floor, the temperature is 400 degrees; when the charcoal making box 34 is located on the seventh floor, the temperature is 450 degrees.

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Abstract

A combined group-overlapped biomass power generation / chemical extraction coproduction device is disclosed, wherein a one-way upper bayonet for locking a carbon producing box and preventing the carbon producing box from moving downwards is arranged on the lower portion of a combustion chamber; a lifting device for lifting the carbon producing box is arranged between the carbon producing box and a feeding track; a gas collecting tube is arranged on one side of a combustion unit, and communicated with the carbon producing box through an interface; a gas inlet is formed on one side of the carbon producing box in opposition to the interface; at least three processing layers are arranged in the combustion chamber; and each processing layer is as high as the carbon producing box. The production process of the coproduction device is automatic and continuous, high in production efficiency, controllable in process and good in effect; chemical raw materials and flammable materials generated by raw materials in the production process can be separated easily; and the separation effect is good and the recovery of the materials is easy.

Description

technical field [0001] The invention relates to a combined biomass power generation and chemical extraction co-production device, which belongs to the field of carbon-making equipment. Background technique [0002] The charcoal making process is to make charcoal by heating and burning wood, so that the wood is not completely burned. The traditional carbon-making equipment is a simple combustion furnace. With the advancement of science and technology, the carbon-making equipment is gradually improved, but this improvement largely only affects the feeding and discharging. Through the improvement of the carbon-making equipment, automatic feeding and automatic The material is discharged, and the continuous production on the assembly line is further realized, which greatly improves the production efficiency. [0003] However, the combustion process, the most critical step in the charcoal production process, has not been improved much. The combustion process will produce a large ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C10B53/02C10B57/00
CPCY02E50/14Y02E50/10
Inventor 李观德
Owner 湖州富升炭业有限公司