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Design of inlet and outlet piping of integrated fuel cell stack with convenience to package

A technology for fuel cell stacks and inlet and outlet tubes, which is applied to fuel cell components, fuel cells, fuel cell additives, etc. It can solve problems such as waste, difficult packaging, and insufficient use of space, and achieve space saving and fluid flow. smooth flow effect

Active Publication Date: 2008-01-02
SHANGHAI MUNICIPAL ELECTRIC POWER CO +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0012] At present, in the proton exchange membrane fuel cell power generation system, the hydrogen supply, air supply, cooling and heat dissipation pipelines are all three-in and three-out circular pipelines, which occupy a lot of space. When these pipelines are combined with the fuel cell stack, especially When performing waterproof and dustproof packaging, since the battery stack is square, there will inevitably be space that is not fully utilized, resulting in waste, and packaging is more difficult

Method used

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  • Design of inlet and outlet piping of integrated fuel cell stack with convenience to package

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Embodiment

[0024] At present, the three-inlet and three-outlet pipelines of the 60kw integrated fuel cell stack (as shown in Figure 1), the hydrogen inlet and outlet pipeline 3, the air inlet and outlet pipeline 2, and the cooling fluid inlet and outlet pipeline 4 are drawn from the middle collector plate of the fuel cell stack 1 The front and rear ends of the electric stack, the present invention relates to the design of an integrated fuel cell stack inlet and outlet pipeline that is easy to package (as shown in Figure 2), the design includes a hydrogen inlet and outlet pipeline 3, an air inlet and outlet pipeline 2, and a cooling fluid inlet and outlet pipeline The three-inlet and three-outlet pipelines of Road 4 are characterized in that the air inlet and outlet pipelines are square tubes, and the square tubes are drawn from the middle collector plate of the fuel cell stack to the front and rear ends of the stack, and are drawn out close to the edge of the fuel cell stack. , and then u...

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Abstract

The invention provides an integrated fuel battery stack entrance tube with easy package, comprising a hydrogen entrance tube, an air entrance tube, and a cooling fluid entrance tube to form a pipeline with three inlets and three outlets, wherein the air entrance tube is square which is leaded out from the front and back ends of electric stack from a middle collecting plate of fuel battery stack, to be leaded out at same or different directions, contacted with the fuel battery stack, to be butted with the square tube via round-square interfaces of round tubes to be connected with an air supply system, the hydrogen entrance tube and the cooling fluid entrance tube are round tubes which are leaded out from the front and back ends of electric stack from a middle collecting plate of fuel battery stack to be leaded out from a square tube of air or leaded from two sides of a square tube of air. Compared with prior art, the invention can save space, with easy package, waterproof and dustproof.

Description

technical field [0001] The invention relates to a fuel cell, in particular to a design of an easy-to-package integrated fuel cell stack inlet and outlet pipeline. Background technique [0002] An electrochemical fuel cell is a device that converts hydrogen fuel and oxidant into electrical energy and reaction products. The internal core component of the device is the membrane electrode (Membrane Electrode Assembly, referred to as MEA). The membrane electrode (MEA) is composed of a proton exchange membrane and two porous conductive materials, such as carbon paper, sandwiched between the two sides of the membrane. On the two boundary surfaces of the membrane and the carbon paper, there are even and finely dispersed catalysts for initiating electrochemical reactions, such as metal platinum catalysts. Conductive objects can be used on both sides of the membrane electrode to draw the electrons generated during the electrochemical reaction through an external circuit to form a cur...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01M8/02H01M8/04H01M8/10H01M8/00H01M8/0271H01M8/24
CPCY02E60/521Y02E60/50
Inventor 胡里清章波
Owner SHANGHAI MUNICIPAL ELECTRIC POWER CO