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Mining rescue capsule and production method thereof

A production method and rescue cabin technology, applied in the field of mining rescue cabins, can solve problems such as bacterial growth, strong odor, unsuitability of rescue cabins and refuge chambers, etc., and achieve strong adhesion and increase the hardness of the coating film

Inactive Publication Date: 2012-12-26
青岛太阳能电力研究院有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, the general antibacterial disinfection method uses chemical substances like August 4th disinfectant to spray. The advantage of this method is that the sterilization effect is fast, but the disadvantage is that after the chemical substances evaporate, bacteria will breed again. The smell is very strong in a short period of time, which is very unsuitable for rescue cabins and refuge chambers with poor underground ventilation

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0015] The rescue cabin of the present invention includes a cabin body, a titanium dioxide film is arranged in the cabin body, and an ultraviolet lamp is also arranged in the cabin body. In water, a nano-titanium dioxide suspension is formed; spraying: uniformly coating the nano-titanium dioxide suspension in step B on the interior of the cabin; drying; installing an ultraviolet lamp.

[0016] The photocatalyst coating solution has both photocatalyst activity and strong adhesion after spraying and drying at room temperature. It is insoluble in water after being applied and dried. Heating can increase its photocatalyst activity and coating film hardness, and the coating film hardness does not decrease with time. Photocatalyst coating solution is a very safe neutral aqueous solution without any harmful substances, and can be sprayed on the surface of any organic and inorganic materials. Users do not need any protection. The photocatalyst reaction is only a surface reaction, an...

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Abstract

The invention provides a technical scheme of a rescue capsule. The rescue capsule comprises a capsule body, wherein a titanium dioxide film is arranged in the capsule body; and an ultraviolet lamp is further arranged in the capsule body. A production method of the rescue capsule disclosed by the invention comprises the following steps of: producing a capsule body; preparing a titanium dioxide masking liquid; spraying; drying; and installing an ultraviolet lamp. A titanium dioxide film of nano-thickness is formed by curing nano-titanium dioxide on the surface of an inner wall; controllable ultraviolet LED (Light-Emitting Diode) lamps are arranged in the rescue capsule and a shelter chamber, and the nano-titanium dioxide undergoes photocatalysis action under the action of ultraviolet rays, so that the effects of resisting bacterial, disinfecting and purifying the air are achieved.

Description

technical field [0001] The invention relates to a mining rescue cabin and a production method thereof. Background technique [0002] Mine rescue cabins and refuge chambers are important equipment for underground safe production. Because it is underground all year round, it is humid, dark, and poorly ventilated, and it is easy to breed various harmful bacteria. This is a very big potential hazard for personnel who enter the rescue cabin and refuge chamber when a mining disaster occurs. How to put an end to the growth of harmful bacteria in the rescue cabin and refuge chamber is very necessary. [0003] At present, the general antibacterial disinfection method uses chemical substances like August 4th disinfectant to spray. The advantage of this method is that the sterilization effect is fast, but the disadvantage is that after the chemical substances evaporate, bacteria will breed again. The smell is very strong in a short period of time, which is very unsuitable for rescue ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61L9/20E21F11/00
Inventor 于庆先孟祥忠肖文光王强
Owner 青岛太阳能电力研究院有限公司