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Solid-state hydrogen storage hydrogen source system and hydrogen energy vehicles

A hydrogen storage and hydrogen source technology, applied in pipeline systems, vehicle parts, transportation and packaging, etc., can solve problems such as system loosening, and achieve good heat exchange, good stability, and good heat exchange effect

Active Publication Date: 2021-06-08
INST OF RESOURCES UTILIZATION & RARE EARTH DEV GUANGDONG ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This method has improved the hydrogen absorption and desorption performance of the system very well, but it has also brought new problems: the connecting pipelines between the storage tanks and components generally use separate valve bodies and gas pipe connections, which will lead to During the driving process of the vehicle, the system is subject to constant vibration and loosening occurs.

Method used

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  • Solid-state hydrogen storage hydrogen source system and hydrogen energy vehicles
  • Solid-state hydrogen storage hydrogen source system and hydrogen energy vehicles
  • Solid-state hydrogen storage hydrogen source system and hydrogen energy vehicles

Examples

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Embodiment

[0047] Please refer to figure 1, this embodiment provides a solid-state hydrogen storage hydrogen source system 100, which includes a hydrogen storage body 110, on which a heat exchange medium pipeline 120, a hydrogen gas path 130, and an alloy filling cavity 140 are formed. In the process, various pipelines and cavities are formed directly on the hydrogen storage body 110, so that the whole system is integrated, and there is no need for extra independent pipelines inside the system, and the common air pipes, valves and tanks in the system in the prior art are eliminated. The connection and welding between the body and other components and processes, thus effectively avoiding the occurrence of hydrogen gas caused by loose parts caused by vibration during the use of each component of the system.

[0048] Specifically, in this embodiment, the heat exchange medium pipeline 120 , the hydrogen gas pipeline 130 and the alloy filling cavity 140 are formed by casting or machining, and...

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Abstract

Embodiments of the present invention provide a solid-state hydrogen storage hydrogen source system and a hydrogen energy vehicle, and relate to the field of hydrogen fuel storage equipment. The solid-state hydrogen storage hydrogen source system includes a hydrogen storage body, and a heat exchange medium pipeline, a hydrogen gas pipeline, and at least one alloy filling chamber for filling a hydrogen storage alloy are arranged inside the hydrogen storage body, and the heat exchange medium pipe The passage includes heat exchange pipelines arranged around the periphery of each alloy filling chamber, and the hydrogen gas passage communicates with each alloy filling chamber. It forms specific heat exchange medium pipelines, hydrogen gas channels and alloy filling chambers directly on the hydrogen storage body, so that the heat exchange medium pipelines, hydrogen gas channels and alloy filling chambers are integrated, and there is no need for additional components inside the system. Independent pipelines, thus effectively avoiding the occurrence of hydrogen gas caused by parts loosening due to vibration during the use of various parts of the system. In addition, the hydrogen energy vehicle has high safety and good stability, and at the same time, hydrogen filling is flexible.

Description

technical field [0001] The invention relates to the field of hydrogen fuel storage equipment, in particular to a solid-state hydrogen storage hydrogen source system and a hydrogen energy vehicle. Background technique [0002] The storage methods of hydrogen mainly include high-pressure gas storage, low-temperature liquid storage, and solid-state storage using hydrogen storage materials. Compared with high-pressure and liquid storage methods, the solid-state hydrogen storage method has the advantages of low hydrogen charging pressure, high volume storage density, good safety, and long-term storage. [0003] Due to historical reasons, automobile manufacturers often choose the high-pressure (>35MPa) gaseous storage method with higher technological maturity as the preferred hydrogen fuel storage system for their fuel cell vehicles. situation. However, although the high-pressure gaseous hydrogen storage technology has a simple route and fast hydrogen charging and discharging...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B60K15/01B60K15/03F17D1/02
CPCB60K15/013B60K15/03006B60K2015/03315F17D1/02Y02E60/34
Inventor 孙泰唐仁衡肖方明
Owner INST OF RESOURCES UTILIZATION & RARE EARTH DEV GUANGDONG ACAD OF SCI
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