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A kind of carbonization method of high-carbon anticorrosive bamboo

A bamboo and high-carbon technology, which is applied in the direction of charcoal burning/combustion, etc., can solve the problems of bamboo hardness decrease, excessive organic matter removal, and insufficient organic matter removal degree, so as to achieve a balanced organic matter removal rate, avoid excessive and too little, and improve anti-corrosion performance Effect

Active Publication Date: 2019-09-24
HUNAN TAOHUAJIANG BAMBOO SCI & TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

On the one hand, due to the high-pressure carbonization of steam, it is difficult to raise the temperature of bamboo to a temperature sufficient to completely remove the organic matter; on the other hand, due to the high-pressure carbonization of steam, the control sensitivity to temperature is not very strong
High-temperature carbonization refers to placing the dried bamboo in a normal-pressure carbonization chamber, and raising the temperature of the bamboo to 100-300°C through heat-conducting oil. The process parameters change greatly during the production process of this method. The constant temperature time of the stage is different, and there is no uniform standard for the highest temperature of heating, which leads to different shades of bamboo after carbonization, which may easily lead to insufficient or excessive removal of organic matter, which will lead to a decrease in the hardness of the bamboo, and then make the bamboo produced. Board products often cannot meet international standards, and cannot maximize the advantages of high-temperature carbonization of bamboo

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] A carbonization method of high-carbon anticorrosive bamboo material includes the following steps:

[0034] 1) The bamboo yellow is removed from fresh bamboo, and the silk-like bamboo slices obtained after rolling are dried, and the moisture content of the bamboo slices after drying is 17%;

[0035] 2) Lay the dried bamboo slices neatly and flatly on the shelf of the carbonization kiln, measure the flat thickness of the bamboo slices at this time h=12cm, and set the carbonization benchmark according to the flat thickness h=12cm;

[0036] 3) Under normal pressure, increase the temperature in stages according to the set carbonization benchmark, and keep the temperature reaching each stage until the organic matter removal rate Q of all bamboo chips in the carbonization kiln just meets the requirements of flexibility The maximum value;

[0037] 4) After the carbonization is completed, use the atomization cooling method to cool the carbonization kiln. After the temperature drops to a...

Embodiment 2

[0057] A carbonization method of high-carbon anticorrosive bamboo material includes the following steps:

[0058] 1) The bamboo yellow is removed from fresh bamboo, and the silk-like bamboo slices obtained after rolling are dried, and the moisture content of the bamboo slices after drying is 15%;

[0059] 2) Lay the dried bamboo slices neatly and flatly on the shelf of the carbonization kiln, measure the flat thickness of the bamboo slices at this time h=8cm, and set the carbonization benchmark according to the flat thickness h=8cm;

[0060] 3) Under normal pressure, increase the temperature in stages according to the set carbonization benchmark, and keep the temperature reaching each stage until the organic matter removal rate Q of all bamboo chips in the carbonization kiln just meets the requirements of flexibility The maximum value;

[0061] 4) After the carbonization is completed, use the atomization cooling method to cool the carbonization kiln. After the temperature drops to a c...

Embodiment 3

[0079] A carbonization method of high-carbon anticorrosive bamboo material includes the following steps:

[0080] 1) After removing bamboo yellow from fresh bamboo, the silk-like bamboo slices obtained after rolling are dried, and the moisture content of the bamboo slices after drying is 13%;

[0081] 2) Place the dried bamboo slices neatly and flatly on the shelf of the carbonization kiln, measure the lay thickness of the bamboo slices at this time h=4cm, and set the carbonization benchmark according to the lay thickness h=4cm;

[0082] 3) Under normal pressure, increase the temperature in stages according to the set carbonization benchmark, and keep the temperature reaching each stage until the organic matter removal rate Q of all bamboo chips in the carbonization kiln just meets the requirements of flexibility The maximum value;

[0083] 4) After the carbonization is completed, use the atomization cooling method to cool the carbonization kiln. After the temperature drops to a certa...

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Abstract

The invention discloses a high-carbon preservative bamboo carbonizing method, which comprises the steps of 1) removing tabasheer from a fresh bamboo to obtain a bamboo splint, and drying the bamboo splint; 2) paving the bamboo splint flat on a disposing rack, measuring the paving thickness h of the bamboo splint, and setting a carbonizing standard according to the paving thickness h; 3) heating by phases according to the set carbonizing standard and keeping the temperature of each phase until all organic matter clearance of the bamboo splint inside a carbonization kiln reaches a maximum value while satisfying a flexibility requirement; 4) after carbonization, cooling the carbonization kiln by atomization cooling to obtain the high-carbon preservative bamboo. According to the invention, the preservative performance of the bamboo can be greatly improved; bamboo stacked in different heights can be carbonized uniformly. In this way, the color of the carbonized bamboo is uniform; color difference is avoided; advantages like short production period, simple operation, safety and environmental protection are provided.

Description

Technical field [0001] The invention relates to a carbonization method, in particular to a carbonization method of high-carbon anticorrosive bamboo. Background technique [0002] The boards made from bamboo as raw materials are widely used in decorative boards such as flooring, wallboards, furniture and other industries because of their cheap, easily available, low cost, beautiful appearance, high strength, and good performance. In particular, moso bamboo grows fast and has abundant resources. It can not only replace wood boards well, save wood resources, but also help protect the ecological environment. Therefore, it has received more and more attention from the country and the industry. However, because the content of organic matter such as starch and sugar in bamboo is higher than that of wood, it is more prone to mildew, browning and insect damage than wood during storage, processing and use of bamboo products, which affects the quality of bamboo products. Beauty and longevi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B27M1/06
Inventor 薛志成李贤军彭坚
Owner HUNAN TAOHUAJIANG BAMBOO SCI & TECH CO LTD
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