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An Array Reforming Reactor

A reforming reactor and array technology, applied in chemical instruments and methods, inorganic chemistry, hydrogen/synthesis gas production, etc., can solve the problems of heavy weight, low work efficiency and speed, and achieve high speed and high reforming efficiency High, easy installation effect

Active Publication Date: 2022-05-10
DALIAN NATIONALITIES UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] In order to solve the problems of low working efficiency and speed, heavy weight and the need to use catalysts in existing reforming reactors, the present invention provides an array reforming reactor

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] An array reforming reactor, including a plurality of main bodies connected in parallel, preferably three, said main body includes an insulating sleeve 1 made of insulating materials such as polytetrafluoroethylene, a combined high-voltage electrode 2, and a polytetrafluoroethylene An outlet cover plate 3 made of insulating materials such as tetrafluoroethylene, a liquid collecting pipe 4, and a grounding electrode 5 made of copper, tungsten alloy, stainless steel, etc.; the insulating sleeve 1 is divided into a fixed end 1-1 and an insulating end 1-2, the fixed end 1-1 is provided with a mounting hole matching with the connecting section of the combined high-voltage electrode 2, and the inside of the insulating end 1-2 is hollow to form an ionization chamber 6, and the main body of the combined high-voltage electrode 2 is located in the ionization chamber 6, insulated One side of the end 1-2 is open, and the outlet cover plate 3 is installed at the opening, one end of th...

Embodiment 2

[0037] An array reforming reactor, including a plurality of main bodies connected in parallel, the main body includes an insulating sleeve 1, a combined high-voltage electrode 2, an outlet cover plate 3, a liquid collection pipe 4 and a grounding electrode 5; the insulating sleeve 1 It is divided into a fixed end 1-1 and an insulating end 1-2. The fixed end 1-1 is provided with a mounting hole that matches the connecting section of the combined high-voltage electrode 2. The hollow inside of the insulating end 1-2 is an ionization chamber 6. The combined high-voltage electrode The main body of 2 is located in the ionization chamber 6, one side of the insulating end 1-2 is open, the outlet cover plate 3 is installed at the opening, one end of the liquid collecting pipe 4 is connected to the insulating end 1-2, and the other end of the liquid collecting pipe 4 is connected to the fixed end 1 The liquid collecting outlet 1-1-2 on -1 is connected, and the outer wall of the insulatin...

Embodiment 3

[0045] An array reforming reactor, including a plurality of main bodies connected in parallel, the main body includes an insulating sleeve 1, a combined high-voltage electrode 2, an outlet cover plate 3, a liquid collection pipe 4 and a grounding electrode 5; the insulating sleeve 1 It is divided into a fixed end 1-1 and an insulating end 1-2. The fixed end 1-1 is provided with a mounting hole that matches the connecting section of the combined high-voltage electrode 2. The hollow inside of the insulating end 1-2 is an ionization chamber 6. The combined high-voltage electrode The main body of 2 is located in the ionization chamber 6, one side of the insulating end 1-2 is open, the outlet cover plate 3 is installed at the opening, one end of the liquid collecting pipe 4 is connected to the insulating end 1-2, and the other end of the liquid collecting pipe 4 is connected to the fixed end 1 The liquid collecting outlet 1-1-2 on -1 is connected, and the outer wall of the insulatin...

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Abstract

An array reforming reactor belongs to the field of reforming hydrogen production. It includes multiple main bodies connected in parallel; the hollow inside of the insulating end is an ionization chamber, the main body of the combined high-voltage electrode is located in the ionization chamber, one side of the insulating end is opened, and an outlet cover is installed at the opening, and the discharge layer is connected to a high-voltage power supply through a power switch. The fixed end is provided with a carrier gas inlet, the carrier gas inlet is connected to the high-pressure carrier gas cylinder through the carrier gas injection valve, the fuel passage is connected to the fuel tank through the fuel injection valve, the fuel tank is connected to the liquid collection tank, and the liquid collection outlet is connected to the collection valve through the liquid collection valve. The liquid pumps are connected, the liquid collection pump is connected to the liquid collection tank, the fixed ends of adjacent bodies are connected, and the grounding electrodes between adjacent bodies are connected. The present invention adopts non-equilibrium plasma technology to reform hydrogen-containing liquid fuel to produce hydrogen, and the reforming efficiency is high and the speed is fast. In addition, the insulating sleeve, combined high-voltage electrode and grounding electrode of the present invention all adopt modular design, which is convenient for use. installation, disassembly and maintenance.

Description

technical field [0001] The invention relates to the field of hydrogen production by reforming, in particular to an array reforming reactor. Background technique [0002] Hydrogen burns cleanly, without emissions of particles, hydrocarbons, and carbon monoxide; if lean combustion technology is used, hydrogen combustion can further achieve zero emissions; therefore, compared with traditional fossil fuels such as gasoline, diesel, and natural gas, hydrogen has the potential to become the main fuel for engines Huge potential. [0003] However, hydrogen is in a gaseous state at normal temperature and pressure. When used, it needs to be liquefied at low temperature, or compressed into high-pressure and high-density compressed hydrogen under pressure. Regardless of the method, hydrogen needs to be stored at high pressure during storage and transportation. In the container, this leads to an increase in the cost of use, and has potential safety hazards; and hydrogen has a wide explo...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C01B3/22
CPCC01B3/22C01B2203/0272C01B2203/1223C01B2203/1229C01B2203/16
Inventor 宋鹏
Owner DALIAN NATIONALITIES UNIVERSITY