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Coal dust inhibitor and preparation method thereof

A technology of coal dust inhibitors and additives, applied in chemical instruments and methods, cleaning methods, and other chemical processes, can solve the problems of short duration of effect, high labor intensity of workers, unfavorable wide use, etc. Harshness, less production equipment, suitable mechanical strength and water resistance

Inactive Publication Date: 2015-01-07
TAIYUAN UNIVERSITY OF SCIENCE AND TECHNOLOGY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The coal tanker needs to be matched with the existing coal loading and unloading devices, which is difficult and costly to operate; the labor intensity of the tarpaulin covering method is high, and there are problems such as tarpaulin loss, damage, and recycling, which is not conducive to widespread use; Sprinkling method is a traditional dust suppression method. Although the single cost of this method is low, due to the short duration of the effect, a large amount of water resources will be wasted in long-term use, and the cost will also increase greatly.

Method used

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  • Coal dust inhibitor and preparation method thereof

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Experimental program
Comparison scheme
Effect test

Embodiment 1、1

[0053] Preparation and Application of Embodiment 1, 1# Coal Dust Inhibitor

[0054] According to the above-mentioned mass percentage of raw materials and preparation method, the 1# coal dust inhibitor was prepared, wherein the mass percentage of polyacrylamide aqueous solution was 2%, the mass percentage of polyvinyl alcohol glue was 8%, hydroxypropyl methyl The mass percentage of the base cellulose aqueous solution is 3%, and the mass percentage of the sodium carboxymethyl cellulose aqueous solution is 8%. The toning emulsion is ZC-1026 anti-alkali blocking emulsion; the penetrating agent is water glass; the defoamer is NXZ defoamer; the pH regulator is 32wt% sodium hydroxide aqueous solution.

[0055] In the 1# coal dust inhibitor prepared by the present embodiment, the mass ratio of each component is as follows:

[0056] Polyacrylamide: Polyvinyl Alcohol: Hydroxypropyl Methyl Cellulose: Sodium Carboxymethyl Cellulose: Glycerin: Toner Emulsion: Penetrant: Defoamer: KCl: pH ...

Embodiment 2

[0059] Preparation and Application of Embodiment 2, 2# Coal Dust Inhibitor

[0060] According to the above-mentioned mass percentage of raw materials and preparation method, 2# coal dust inhibitor was prepared, wherein the mass percentage of polyacrylamide aqueous solution was 3%, the mass percentage of polyvinyl alcohol glue was 10%, hydroxypropyl methyl The mass percentage of the base cellulose aqueous solution is 2%, and the mass percentage of the sodium carboxymethyl cellulose aqueous solution is 8%. The toning emulsion is ZC-1026 anti-alkali blocking emulsion; the penetrating agent is water glass; the defoamer is NXZ defoamer; the pH regulator is 32wt% sodium hydroxide aqueous solution.

[0061] In the 2# coal dust inhibitor prepared by the present embodiment, the mass ratio of each component is as follows:

[0062] Polyacrylamide: polyvinyl alcohol: hydroxypropyl methylcellulose: sodium carboxymethylcellulose: glycerin: color emulsion: penetrant: defoamer: KCl: pH adjus...

Embodiment 3

[0065] Preparation and Application of Embodiment 3, 3# Coal Dust Inhibitor

[0066] According to the above-mentioned mass percentage of raw materials and preparation method, 3 coal dust inhibitors were prepared, wherein the mass percentage of polyacrylamide aqueous solution was 4%, the mass percentage of polyvinyl alcohol glue was 15%, hydroxypropyl methyl The mass percent content of the cellulose aqueous solution is 2%, and the mass percent content of the sodium carboxymethyl cellulose aqueous solution is 6%. The toning emulsion is ZC-1026 anti-alkali blocking emulsion; the penetrating agent is water glass; the defoaming agent is NXZ defoaming agent.

[0067] In the 3# coal dust inhibitor prepared by the present embodiment, the mass ratio of each component is as follows:

[0068] Polyacrylamide: Polyvinyl Alcohol: Hydroxypropyl Methyl Cellulose: Sodium Carboxymethyl Cellulose: Glycerin: Toner Emulsion: Penetrant: Defoamer: KCl: Water=0.8:6:0.36:0.3:2: 10:0.6:0.4:4:75.54.

...

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Abstract

The invention discloses a coal dust inhibitor and a preparation method thereof. The coal dust inhibitor comprises an organic binding agent, a penetrating agent, a humectant, a de-foaming agent and water, wherein the organic binding agent comprises polyacrylamide and polyvinyl alcohol; the humectant comprises hydroxypropyl methyl cellulose, sodium carboxymethylcellulose and glycerol. The preparation method of the coal dust inhibitor comprises the following steps: mixing components in following (1) or (2) and uniformly mixing: (1) the organic binding agent, the penetrating agent, the humectant, the de-foaming agent and water; (2) the organic binding agent, the penetrating agent, the humectant, the de-foaming agent, an pH adjusting value, color modulation emulsion, an auxiliary agent and water. The coal dust inhibitor has a high speed of forming a cured protection layer and has proper mechanical strength and water resistance; the preparation method is simple and has the characteristic that needed production equipment is little. The coal dust inhibitor can be used for dust inhibition of coal transportation, storage, construction sites and the like.

Description

technical field [0001] The invention relates to a coal dust inhibitor and a preparation method thereof. Background technique [0002] The total reserves of coal resources in my country are more than 1 trillion tons, of which the three provinces (regions) of Shanxi, Shaanxi and Mongolia account for more than 60%. However, coal consumption is mainly in the eastern region, and the misplaced layout of coal production and consumption in my country has formed a consumption pattern of "coal transportation from north to south and coal from west to east". The speed of the railway has been greatly increased several times, the number of highways has increased, the speed of transportation has been greatly accelerated, and the degree of dust thrown during transportation has intensified. The coal loss of the existing transportation methods has reached 0.8% to 1%. In the process of coal transportation, the scattered coal powder pollutes the environment along the railways, highways, and st...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09K3/22C08L33/26C08L1/28C08L29/04C08K5/053C08K3/16C08K3/22C08K3/34E01H3/00
Inventor 赵玉英吴志刚王颖莉王二兵张宏平
Owner TAIYUAN UNIVERSITY OF SCIENCE AND TECHNOLOGY