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A self-stirring hydrogen production device

A hydrogen production device and self-stirring technology, applied in the field of hydrogen production, can solve the problems of poor working stability of hydrogen storage metal, incomplete reaction of reactants, complicated reaction control, etc., and achieve the effects of simple structure, convenient control, and avoiding complex equipment.

Active Publication Date: 2016-01-27
山东嘉驰新材料股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, the main obstacles to the application of hydrogen are: heavy hydrogen storage tanks, the mass ratio of tanks to hydrogen is about 80:1; hydrogen storage metals have poor working stability and high cost; It is a convenient and economical method to produce hydrogen by reacting an aqueous solution. The main problem for producing hydrogen by reacting materials containing metal magnesium, aluminum, zinc, etc. with an aqueous solution is that the reaction control is complicated, and there will be Hydroxide is deposited on the surface of the reactant containing metal magnesium for fuel, which inhibits its further reaction with water, resulting in incomplete reaction of the reactant and high cost. Therefore, a self-stirring system with simple structure and convenient control is researched and designed. Hydrogen device has practical significance

Method used

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  • A self-stirring hydrogen production device

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Embodiment Construction

[0013] The principles and features of the present invention are described below in conjunction with the accompanying drawings, and the examples given are only used to explain the present invention, and are not intended to limit the scope of the present invention.

[0014] A self-stirring hydrogen production device includes a sealed reaction chamber, a hydrogen discharge pipeline 1, a pneumatic rotating blade 3, a stirring blade 4, a stirring shaft 5, a fuel storage bin, a feed system 7 and a vacuum system; the sealed reaction chamber includes Reaction liquid chamber 6, the cross-section of the hydrogen gas discharge pipeline 1 is square, and the pneumatic rotary vane 4 is arranged on the path of the pipeline, and the pneumatic rotary vane 4 can rotate with the discharge of hydrogen gas. Driven to be connected to the stirring shaft 5, one end of the stirring shaft 5 extends below the liquid level of the liquid phase reactant, and the end is equipped with a stirring blade 4, and ...

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Abstract

The invention relates to a self-stirring hydrogen production device. The self-stirring hydrogen production device comprises a sealed reaction chamber, a hydrogen discharge pipeline, pneumatic rotating blades, stirring blades, a stirring shaft, a fuel storage cabin, a feeding system and a vacuum system, wherein the sealed reaction chamber internally comprises a reaction liquid cabin; the cross section of the hydrogen discharge pipeline is square; the pneumatic rotating blades are arranged on the route of the pipeline; the pneumatic rotating blades can rotate along with discharge of hydrogen; the rotating shaft of the pneumatic rotating blades can be connected with the stirring shaft in a transmission manner; one end of the stirring shaft extends to be below the liquid level of liquid reactant; the stirring blades are mounted at the end part of the stirring shaft; the fuel storage cabin is of a sealable structure; the feeding system comprises a liquid feeding system and a fuel feeding system; the fuel feeding system is connected with the fuel storage cabin; the liquid feeding system comprises a feeding hole and a feeding valve; the vacuum system is used for vacuumizing the sealed chamber.

Description

technical field [0001] The invention relates to the technical field of hydrogen production, in particular to a self-stirring hydrogen production device. Background technique [0002] Hydrogen is the most environmentally friendly and green energy recognized so far, and its combustion product is water without any negative environmental impact. The efficiency of converting hydrogen into electricity through fuel cells is the highest, theoretically up to 95%. At present, the main obstacles to the application of hydrogen are: heavy hydrogen storage tanks, the mass ratio of tanks to hydrogen is about 80:1; hydrogen storage metals have poor working stability and high cost; It is a convenient and economical method to produce hydrogen by reacting an aqueous solution. The main problem for producing hydrogen by reacting materials containing metal magnesium, aluminum, zinc, etc. with an aqueous solution is that the reaction control is complicated, and there will be Hydroxide is deposit...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J8/10C01B3/08
CPCY02E60/36
Inventor 钟传新
Owner 山东嘉驰新材料股份有限公司
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