Method for preparing coal-based porous activated carbon material by using cyanamide waste residues as template

A kind of porous activated carbon and activated carbon technology, which is applied in the field of porous carbon materials prepared by hard template method, can solve the problems of no effective utilization of cyanamide waste residue, difficult control of pore structure, pollution of groundwater, etc., and achieve pore expansion and resource utilization, The effect of reducing production costs and reducing processing costs

Active Publication Date: 2019-02-12
ZHEJIANG UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Because cyanamide waste residue is an industrial waste residue that is difficult to handle and has almost no use value, most domestic manufacturers pile up or landfill cyanamide waste residue on the spot, which not only takes up valuable land resources, but also causes damage to air, surface water and groundwater. severe pollution
Since the cyanamide waste residue and leachate are strongly alkaline, the accumulation and seepage will cause salinization of the land and pollute the groundwater. At the same time, the dust of the alkaline slag will pollute the surrounding environment and endanger the life and health of residents. Therefore, how to effectively use this Waste of resources has become a major problem facing green China
[0006] So far, there is no effective utilization method of cyanamide waste residue. In addition, there are still some technical problems in the large-scale industrial production of nitrogen-doped porous carbon materials. The pore-forming method of nitrogen-doped porous carbon materials usually has hard template method , soft template method, activation method and other methods, among which the hard template method and the soft template method often require expensive templating agents and require a certain post-treatment process, which is difficult to be used in large-scale industrial production; the activation method is currently a commonly used pore-forming method in industry The method also has the problem that the pore structure is difficult to control.

Method used

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  • Method for preparing coal-based porous activated carbon material by using cyanamide waste residues as template
  • Method for preparing coal-based porous activated carbon material by using cyanamide waste residues as template
  • Method for preparing coal-based porous activated carbon material by using cyanamide waste residues as template

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Experimental program
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Effect test

Embodiment 1

[0036] Crush the raw coal to obtain 60-200 mesh raw coal particles, weigh 100kg of the crushed raw coal particles, 5kg of cyanamide waste residue, 60kg of coal tar and 20kg of water and mix evenly to obtain a mixture; compress the mixture with an extruder, and ventilate and dry it Put it in the pyrolysis tube, feed nitrogen and heat it so that the temperature of the material in the pyrolysis tube reaches 400°C and keep the temperature constant for 2 hours; then stop feeding nitrogen, and feed a flow rate of 0.7 kg / h per kilogram of reaction raw materials Continuously feed water vapor into the pyrolysis tube, keep the temperature at 400°C for 3 hours, then cool to room temperature under nitrogen atmosphere to obtain 22kg of crude activated carbon; add 2.2kg of hydrochloric acid and 110kg of water, pickle at 30°C for 5 hours, and wash with water until the filtrate When the pH is greater than 6, the nitrogen-doped hierarchically porous coal-based activated carbon can be obtained. ...

Embodiment 2

[0040]Crush the raw coal to obtain 60-200 mesh raw coal particles, weigh 100kg of the crushed raw coal particles, 2kg of cyanamide waste residue, 60kg of coal tar and 20kg of water and mix evenly to obtain a mixture; compress the mixture with an extruder, and ventilate and dry it Put it in the pyrolysis tube, feed nitrogen and heat it, so that the temperature of the material in the pyrolysis tube reaches 600 ° C and keep the temperature constant for 3 hours; then stop feeding nitrogen, and feed the amount of flow rate of 0.8 kg / h per kilogram of reaction raw materials Continuously feed water vapor into the pyrolysis tube, keep the temperature at 600°C for 3 hours, then cool to room temperature under nitrogen atmosphere to obtain 22kg of crude activated carbon; add 2.2kg of hydrochloric acid and 110kg of water, pickle at 30°C for 5 hours, and wash with water until the filtrate When the pH is greater than 6, the nitrogen-doped hierarchically porous coal-based activated carbon can...

Embodiment 3

[0042] Crush the raw coal to obtain 60-200 mesh raw coal particles, weigh 100kg of crushed raw coal particles, 8kg of cyanamide waste residue, 60kg of coal tar and 20kg of water and mix them evenly to obtain a mixture; compress the mixture with an extruder, and ventilate and dry it Put it in the pyrolysis tube, feed nitrogen and heat it, so that the temperature of the material in the pyrolysis tube reaches 800°C and keep the temperature constant for 10 hours; then stop feeding nitrogen, and feed a flow rate of 1.2 kg / h per kilogram of reaction raw materials Continuously feed CO into the pyrolysis tube 2 Gas, after constant temperature at 800°C for 3h, in CO 2 Cool to room temperature under atmosphere to obtain 22kg of crude activated carbon; add 2.2kg of hydrochloric acid and 110kg of water, pickle at 30°C for 5 hours, wash with water until the pH of the filtrate is greater than 6, and obtain nitrogen-doped hierarchically porous coal-based activated carbon.

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Abstract

The invention relates to the field of preparation of porous carbon materials by a rigid template method, and particularly discloses a method for preparing coal-based porous activated carbon material by using cyanamide waste residues as a template. The method comprises the following steps of crushing the crude coal, grinding into the crude coal particles with granularity of 60 to 200 meshes, addingthe cyanamide waste residues, an adhesive and water, and uniformly mixing; compressing and forming the reaction material, ventilating air, airing, and carbonizing; conveying the carbonized material into an activating furnace, leading activating gas, and activating; finally, sequentially performing pickling treatment and water washing treatment on the crude product of the activated carbon, and drying, so as to obtain the coal-based porous activated carbon material. The method has the advantages that the method is simple, and the operation is easy; the treatment cost of highly-hazardous wastes,such as cyanamide industrial waste residues, can be greatly reduced, the resources can be recycled, and the nitrogen-modified coal-based activated carbon with high added value can be obtained in onestep; the recycled carbon material can be used as an adsorbent or a catalyst carrier, so that the added value of the coal-based activated carbon is greatly increased.

Description

technical field [0001] The invention relates to the field of preparing porous carbon materials by a hard template method, in particular to a method for preparing coal-based multi-level porous activated carbon materials by using cyanamide waste residue as a template. Background technique [0002] As a material with high specific surface area and developed pores, porous carbon material has the advantages of acid and alkali corrosion resistance and low price, and is widely used in adsorption, decolorization, refining, separation, catalysis and other fields. At present, the raw materials of industrial porous carbon materials mainly come from carbon-containing organic substances such as coal and biomass, of which coal-based activated carbon accounts for about 60%, but the pore structure of carbon materials prepared from coal is usually microporous carbon with a pore size less than 2nm. There are certain limitations in the use of materials, therefore, the preparation of coal-based...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B32/336C01B32/318
CPCC01B32/318C01B32/336
Inventor 李瑛邱一洋蓝国钧唐浩东韩文锋
Owner ZHEJIANG UNIV OF TECH
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