Compound medical molecular sieve center oxygen generation and medical compressed air integrated equipment

A compressed air and molecular sieve technology, applied in oxygen production, chemical industry, climate sustainability, etc., can solve the problems of increasing gas supply cost, uninterrupted gas supply process, unstable gas supply, etc., to ensure stability, guarantee The effect of continuous oxygen supply and high reliability

Inactive Publication Date: 2012-09-19
珠海市精钰科技设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Such a situation causes periodic fluctuations in gas consumption in hospitals, and it is also necessary to ensure that the gas supply process cannot be interrupted
[0006] The above circumstances lead to strong randomness of gas consumption in hospitals, which often change with changes in diagnosis and treatment, types of hospitals, different time and seasons, and relatively large fluctuations. The problem of unstable gas supply and large loss in the gas supply process has been solved, resulting in a decrease in the safety, reliability and effectiveness of the gas supply. The stability of the gas supply is related to the safety of patients using gas, and unnecessary losses in the gas supply process are Increased gas supply costs

Method used

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  • Compound medical molecular sieve center oxygen generation and medical compressed air integrated equipment
  • Compound medical molecular sieve center oxygen generation and medical compressed air integrated equipment
  • Compound medical molecular sieve center oxygen generation and medical compressed air integrated equipment

Examples

Experimental program
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Effect test

Embodiment 1

[0027] like figure 1As shown in the figure, the integrated equipment for oxygen production and medical compressed air in the compound medical molecular sieve center includes the main air supply source, auxiliary air supply source, and backup air supply source that continues to supply oxygen after the main air supply source and auxiliary air supply source are shut down at the same time. The main air supply source, the auxiliary air supply source and the backup air supply source share an air balance tank 4, an oxygen balance tank 7 and an oxygen sub-cylinder 14 with pressure equalization and flow equalization, and the auxiliary air supply source is arranged side by side with the main air supply source. The main air supply source includes the main air compressor 1, the main main circuit filter 2, the main refrigeration dryer 3, the main oxygen generator 6, the main oxygen flow measuring device 9 and The main oxygen purity detector 10, the output end of the main air compressor 1 i...

Embodiment 2

[0037] The only difference between the second embodiment and the first embodiment is that, as figure 2 As shown, each pipeline of the main air supply source, auxiliary air supply source and backup air supply source is separately connected to an air balance tank (4, 4', 4") and an oxygen balance tank (7, 7', 7") ), the other output end of each air balance tank (4, 4', 4") is connected in parallel and then connected to the medical air pipeline 16 to ensure that the main air supply source, auxiliary air supply source and backup air supply source are mutually They are independent, do not interfere with each other, and supply gas separately.

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Abstract

The invention relates to compound medical molecular sieve center oxygen generation and medical compressed air integrated equipment, which comprises a main air source, an auxiliary air source and a standby air source which can continuously supply oxygen after the main air source and the auxiliary air source are shut down at the same time. The main air source, the auxiliary air source and the standby air source share one air balance tank, one oxygen balance tank and an oxygen distribution cylinder with a pressure and flow equalizing effect. The auxiliary air source is abreast arranged beside the main air source and is used for conducting auxiliary and supplementary air supply to the main air source. After the main air source and the auxiliary air source are shut down at the same time, the standby air source continuously supplies air.

Description

【Technical field】 [0001] The invention relates to a medical molecular sieve central oxygen-producing equipment, in particular to a composite medical molecular sieve central oxygen-producing and medical compressed air integrated equipment. 【Background technique】 [0002] At present, medical gas supply equipment is an indispensable facility for hospitals. The medical gases used in hospitals include medical oxygen, medical compressed air, nitrous oxide (N2O), mixed air and nitrogen. The commonly used medical gases are mainly medical oxygen. and medical compressed air. In the construction of medical gas supply equipment in domestic hospitals, among the domestic standards that can be checked, the Ministry of Construction of the People's Republic of China promulgated in 2002 the technical specification for the construction of the clean operation department of the hospital (GB50333-2002), which stipulates the clean operation department of the hospital. Some manuals also give rough...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B13/02A61M16/10
CPCY02P20/10
Inventor 杨云
Owner 珠海市精钰科技设备有限公司
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