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Preparation device of graphene-doped magnesium-based hydrogen storage material

A technology for hydrogen storage materials and preparation devices, applied in the fields of hydrogen, inorganic chemistry, electrostatics, etc., can solve the problems of low hydrogen storage stability, hidden dangers of fire and electric leakage, loss of preparation cost, etc., to ensure completeness and storage efficiency, The effect of preventing internal thermal instability of magnesium base and improving electrical resistance

Active Publication Date: 2020-10-30
GUIZHOU UNIV OF ENG SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In view of the deficiencies in the prior art, the purpose of the invention is to provide a preparation device for a graphene-doped magnesium-based hydrogen storage material to solve electrostatic dust debris In magnesium-based hydrogen storage materials, it is easy to produce a network distribution phenomenon of precipitation and crystallization of carbon-based structural chains, resulting in autonomous cracking of the preparation device, causing the hydrogen storage operation to produce static ion flow in the packaged material. Let the hydrogen ions be leaked by the electrostatic charge, which will lead to the internal combustion of magnesium-based materials, resulting in double safety hazards of fire and leakage during the preparation process, and the stability of hydrogen storage is not high, and it is easy to generate gas explosion during the ionization process, thus loss of preparation Costs and issues endangering staff

Method used

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  • Preparation device of graphene-doped magnesium-based hydrogen storage material
  • Preparation device of graphene-doped magnesium-based hydrogen storage material
  • Preparation device of graphene-doped magnesium-based hydrogen storage material

Examples

Experimental program
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Effect test

Embodiment 1

[0032] see Figure 1-Figure 6, the present invention provides a preparation device for a graphene-doped magnesium-based hydrogen storage material, the structure of which includes: a graphite magnesium-based net tank 1, a connecting pipe frame 2, a hoisting frame plate 3, a lying tank tank 4, a central control room 5, Electric meter base 6, pneumatic tube 7, the graphite magnesium base net tank 1 is installed in the lower left corner of the connecting pipe frame 2 and communicates with each other, the connecting pipe frame 2 and the hoisting frame plate 3 are buckled together and perpendicular to each other, the The mounting plate 3 is inserted in the upper left corner of the central control room 5, the horizontal tank tank 4 is installed inside the central control room 5 and is on the same vertical plane, and the electric meter base 6 and the pneumatic tube 7 are closely attached to the central control room 5 inside the right side and on the same vertical plane, the graphite m...

Embodiment 2

[0039] see Figure 1-Figure 6 , the present invention provides a preparation device of a graphene-doped magnesium-based hydrogen storage material, and other aspects are the same as in Example 1, except that:

[0040] see figure 2 The post induction box 1A is composed of a post carriage block 1A1, a short rail post 1A2, and a box housing 1A3, and the post post carriage block 1A1 is mechanically connected with the short rail post 1A2 and is on the same level. The short rail column 1A2 is inserted into the inside of the tank shell 1A3, and the positive and negative alignment line spacing of the short rail column 1A2 is slidingly pressed by the connecting column carriage block 1A1 to form a current pulling and spreading effect.

[0041] see image 3 , the post carriage block 1A1 is composed of a post plate 1A11, a lead inclined tube 1A12, a post cap seat 1A13, and a contact lamp bead 1A14. On both sides and on the same vertical plane, the inclined lead tube 1A12 is electricall...

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Abstract

The invention discloses a preparation device of a graphene-doped magnesium-based hydrogen storage material. The preparation device structurally comprises a graphite magnesium-based net tank, a communicating pipe frame, a hoisting frame plate, a horizontal tank groove, a central control room, an electric meter seat and a pneumatic pipe; the graphite magnesium-based net tank is matched with the communicating pipe frame; a graphene net-shaped carbon chain overlapping structure is additionally arranged at the hydroxyl position of a graphene net disc of a relay network ring disc; the reticular distribution of separated crystals is protected; a net-shaped carbon chain wrapping rotation effect is formed; the electricity resistance of the magnesium-based hydrogen storage material is improved through a connecting column induction box and an armature slip ring frame; the hydrogen energy storage stability is ensured; by means of the annular cavity dust removal channel, transverse breakdown current and turbulent flow treatment effect of rotation of an electromagnetic net armature block can be conveniently conducted on electrostatic dust and chippings in the later period, wound electrostatic particles can be effectively prevented from being wound out of the cavity, interference with hydrogen storage operation of equipment is avoided, heat instability in a magnesium base is also prevented, and material integrity and storage efficiency are guaranteed.

Description

technical field [0001] The invention relates to a preparation device of a graphene-doped magnesium-based hydrogen storage material, which belongs to the field of chemical equipment. Background technique [0002] Hydrogen energy is one of the current low-carbon and environmentally friendly mechanical energy sources, and it is also a widely used resource. In the preparation of magnesium-based hydrogen storage materials, the storage of hydrogen energy will facilitate the later batch energy transfer and use, effectively driving the overall mechanical power source, and To avoid short-term insufficient supply and efficiently form backup energy, the disadvantages of the current technology that need to be optimized are: [0003] Electrostatic dust debris in magnesium-based hydrogen storage materials is prone to produce a network distribution phenomenon of crystallization of carbon-based structural chains, resulting in autonomous cracking of the preparation device, causing the hydrog...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B3/00H05F3/00
CPCC01B3/0078H05F3/00Y02E60/32
Inventor 杨敏建尚文丽朱学琴蒙龙标胡正南张玲香潘凯文杨宣
Owner GUIZHOU UNIV OF ENG SCI
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