Heating material for carbon dioxide cracking device

A heating material, carbon dioxide technology, applied in the direction of compressed gas generation, offensive equipment, explosives, etc., can solve the problems that liquid carbon dioxide cannot expand rapidly, the blasting energy is not high, and affects the blasting process, etc., achieving high flatness and high calorific value , to ensure the effect of safety and environmental protection

Inactive Publication Date: 2020-05-15
侯丽红
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, the heat-generating material used in the current carbon dioxide cracking blasting method has less heat generation, so that the liquid carbon dioxide cannot be rapidly expanded and blasted, resulting in a longer blasting time. A large amount of dust and noise are generated when the wall is blown, which affects the entire blasting process

Method used

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  • Heating material for carbon dioxide cracking device
  • Heating material for carbon dioxide cracking device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0057] Embodiment 1: Provide a kind of exothermic material for carbon dioxide cracker, raw material comprises 0.4 weight part of cerium, 2 weight parts of metal powder, 18 weight parts of salicylic acid, 55 weight parts of potassium permanganate, 22 weight parts of ammonium compound and 8 parts by weight of ash powder. Wherein, ashes include plant ash, sulfur, hemp stalk ash, charcoal powder, and the weight ratio among plant ash, sulfur, hemp stalk ash, charcoal powder is 1:0.01:1:10; Described ammonium compound is ammonium nitrate and A mixture of ammonium molybdate, wherein the weight ratio of ammonium nitrate and ammonium molybdate is 4.5:1.2; the metal powder is a mixture of beryllium powder, magnesium powder and lithium powder, and its mass ratio is 1:2.5:0.8; the magnesium powder The average particle size is 65nm.

[0058] Blasting method: add the carbon dioxide blasting composition into the carbon dioxide blaster, and send the carbon dioxide blaster into the blast hole...

Embodiment 2

[0059] Embodiment 2: Provide a kind of exothermic material for carbon dioxide cracker, raw material comprises 0.4 weight part of cerium, 2 weight parts of metal powder, 18 weight parts of salicylic acid, 55 weight parts of potassium permanganate, 22 weight parts of ammonium compound and 8 parts by weight of ash powder. Wherein, the ash powder includes plant ash, sulfur, hemp stalk ash, and charcoal powder, and the weight ratio between plant ash, sulfur, hemp stalk ash, and charcoal powder is 1:0.01:1:10; the ammonium compound is ammonium nitrate; The metal powder is a mixture of beryllium powder, magnesium powder and lithium powder with a mass ratio of 1:2.5:0.8; the average particle size of the magnesium powder is 65nm.

[0060]Blasting method: add the carbon dioxide blasting composition into the carbon dioxide blaster, and send the carbon dioxide blaster into the blast hole, wherein the weight ratio of the heating material for the carbon dioxide cracker to the liquid carbon ...

Embodiment 3

[0061] Embodiment 3: Provide a kind of exothermic material for carbon dioxide cracker, raw material comprises 0.4 weight part of cerium, 2 weight parts of metal powder, 18 weight parts of salicylic acid, 55 weight parts of potassium permanganate, 22 weight parts of ammonium compound and 8 parts by weight of ash powder. Wherein, ashes include plant ash, sulfur, hemp ash, charcoal powder, and the weight ratio between plant ash, sulfur, hemp ash and charcoal powder is 1:0.01:1:10; the ammonium compound is ammonium molybdate ; The metal powder is a mixture of beryllium powder, magnesium powder and lithium powder, the mass ratio of which is 1:2.5:0.8; the average particle size of the magnesium powder is 65nm.

[0062] Blasting method: add the carbon dioxide blasting composition into the carbon dioxide blaster, and send the carbon dioxide blaster into the blast hole, wherein the weight ratio of the heating material for the carbon dioxide cracker to the liquid carbon dioxide is 0.08:...

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Abstract

The invention relates to the technical field of carbon dioxide cracking, in particular to a heating material for a carbon dioxide cracking device. The heating material at least comprises the followingraw materials: a catalyst, metal powder, organic acid, an oxidant, an ammonium compound and ash powder, wherein the catalyst at least comprises a rare earth element catalyst. The heating material hasthe advantages that the heating speed is high; the calorific value is high; liquid carbon dioxide can be rapidly converted into gaseous carbon dioxide, the effect achieved by a large amount of materials before can be achieved by adding a small amount of the heating material, the material cost is reduced, pollution-free raw materials are adopted, and safety and environmental friendliness of the heating material are guaranteed. In addition, the high blasting energy can instantaneously generate a very high shearing force on the inner wall of a rock, so that the broken wall has higher flatness, and the generation of broken stone, dust and noise is effectively reduced.

Description

technical field [0001] The invention relates to the technical field of carbon dioxide cracking, in particular to a heating material for a carbon dioxide cracker. Background technique [0002] With the development of urban underground railways in my country and the continuous maturity of urban subway networks, subway stations and lines usually contain pile structures, and manual excavation of piles is required for construction. When the artificial excavation pile encounters a rock layer with high hardness, it will adopt the method of manual and mechanical excavation, or the method of explosive blasting. The former construction is difficult, the work efficiency is low, and there is great safety when people work underneath. Risk, the latter pollutes the environment, the process is cumbersome, unsafe and costly. [0003] High-pressure gas blasting is a kind of blasting without explosives. In the early 1960s, some developed countries such as the United States began to study this...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C06B33/12C06B33/14C06D5/00
CPCC06B33/12C06B33/14C06D5/00
Inventor 侯丽红傅铮铭曾登奎卢立胜
Owner 侯丽红
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