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Inorganic salt type inhibitor for preventing and controlling spontaneous combustion of residual coal in goaf of coal mine

A technology of inhibitors and inorganic salts, which is applied in the field of fire prevention and extinguishing in coal mine goafs, can solve the problems of in-depth research on site application, lack of inorganic salts inhibitors, complex processes, etc., and achieve processing, preparation and construction The method is simple, the chemical resistance effect is excellent, and the fire prevention effect is good.

Inactive Publication Date: 2010-07-07
UNIV OF SCI & TECH BEIJING
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The process of pre-injecting water through the coal seam, spraying to the gob, spraying to the coal pillar cracks and broken zones of the coal wall, spraying to the high temperature and high risk area, and spraying in the coal storage bunker is too complicated, and it is a gel-type inhibitor. One, does not have the characteristics of inorganic salt inhibitors
[0007] The above two types of inhibitors have the disadvantages of low inhibition rate or high cost. In our country, the research on inorganic salt inhibitors that can absorb heat and cool down, and can thermally decompose to generate inert gas carbon dioxide has not yet been deeply studied and very much. good field application

Method used

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  • Inorganic salt type inhibitor for preventing and controlling spontaneous combustion of residual coal in goaf of coal mine
  • Inorganic salt type inhibitor for preventing and controlling spontaneous combustion of residual coal in goaf of coal mine

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Take 30g of sodium bicarbonate, 30g of calcium bicarbonate, 10g of calcium chloride, 10g of magnesium chloride, 10g of sodium chloride and 10g of zinc chloride, and mix them evenly to prepare 100g of inorganic salt type inhibitor. In the inhibitor, the content of sodium bicarbonate is 30%, calcium bicarbonate is 30%, calcium chloride is 10%, magnesium chloride is 10%, sodium chloride is 10%, and zinc chloride is 10%. The prepared mixed inhibitor can be tested for resistance rate determination. The inhibition rate of the inorganic salt type inhibitor of this formula reaches 78.6%.

Embodiment 2

[0028] Take 30g of sodium bicarbonate, 30g of calcium bicarbonate, 5g of calcium chloride, 10g of magnesium chloride, 5g of sodium chloride, and 20g of zinc chloride, and mix them evenly to make 100g of inorganic salt type inhibitor. In the inhibitor, the content of sodium bicarbonate is 30%, calcium bicarbonate is 30%, calcium chloride is 5%, magnesium chloride is 10%, sodium chloride is 5%, and zinc chloride is 20%. The prepared mixed inhibitor can be tested for resistance rate determination. The inhibition rate of the inorganic salt type inhibitor of this formula reaches 84.7%.

Embodiment 3

[0030] Take 20g of sodium bicarbonate, 20g of calcium bicarbonate, 10g of calcium chloride, 10g of magnesium chloride, 10g of sodium chloride and 30g of zinc chloride, and mix them evenly to make 100g of inorganic salt type inhibitor. In the inhibitor, the content of sodium bicarbonate is 20%, calcium bicarbonate is 20%, calcium chloride is 10%, magnesium chloride is 10%, sodium chloride is 10%, and zinc chloride is 30%. The prepared mixed inhibitor can be tested for resistance rate determination. The inhibition rate of the inorganic salt type inhibitor of this formula reaches 71.3%.

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Abstract

The invention discloses an inorganic salt type inhibitor for preventing and controlling spontaneous combustion of residual coal in a goaf of a coal mine, which belongs to the field of fire prevention and extinguishment in the goaf of the coal mine. The inorganic salt type inhibitor consists of sodium bicarbonate, calcium bicarbonate, calcium chloride, magnesium chloride, sodium chloride and zinc chloride according to a certain proportion by weight. The average inhibiting rate of the inorganic salt type inhibitor can achieve 85%, and the inhibiting effect is ideal. When in use, the inhibitor is covered on the surface of the residual coal in the goaf, thereby achieving the effects of preventing and controlling the spontaneous combustion of a coal layer in the region for a long time. The dusting method of the inorganic salt type inhibitor for fire prevention and extinguishment is safe and stable, the process flow is simple, the operation is convenient, the initial investment is low, and the using cost is relatively low. The fire prevention and extinguishment technology of the inorganic salt type inhibitor which has thermal instability and can release inert gas carbon dioxide has broad application prospects in the work of preventing and controlling the spontaneous combustion fire disasters of the coal layers. The inorganic salt type inhibitor is applicable to the fire prevention and extinguishment in the goaf of the coal mine.

Description

technical field [0001] The invention belongs to the field of fire prevention and fire prevention in goafs of coal mines. The invention relates to a fire-fighting and chemical-inhibiting agent for gobs in coal mines, which has the function of absorbing heat and cooling, and can provide inert gas carbon dioxide for coal left in goafs, thereby reducing the oxidation rate and preventing the spontaneous combustion of coal. It can be used for the prevention and control of goaf fires in the process of coal mining. Background technique [0002] my country is very rich in coal resources. Coal production and consumption are at the forefront of the world, accounting for more than 85% of the total domestic primary energy production and consumption. However, spontaneous combustion in coal mines is very serious. According to the results of statistical analysis of the existing accident data in my country, among many mine accidents, fire accidents are one of the main disasters in mines. T...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A62D1/02E21F5/08
Inventor 张英华黄志安皮希宇高玉坤
Owner UNIV OF SCI & TECH BEIJING
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