Metal Hydride Hydrogen Storage
There are things today, which are the main method of hydrogen storage, called metal hydride hydrogen storage (Metal Hydride Hydrogen Storage). Metal hydrides, which combine metal and hydrogen, can accommodate hydrogen in the middle. It has many wonders in hydrogen storage.
First, the capacity is quite large. Metal hydrides have an exquisite structure, which can make the amount of hydrogen stored per unit mass or volume very abundant, far exceeding the ordinary method. For example, a certain type of metal hydride can store hydrogen in a compact state, which greatly reduces the space occupied by gaseous hydrogen storage, and the amount of hydrogen storage increases.
Second, good safety. Metal hydrides store hydrogen, hydrogen is bonded to metals, and is not free in gaseous state. In this way, during storage and transportation, the risk of hydrogen leakage, explosion, etc. is greatly reduced. That is, in case of external force, high temperature and other changes, hydrogen is also difficult to escape suddenly, causing disasters.
Third, good reversibility. When hydrogen is needed, apply appropriate temperature and pressure, and metal hydrides can release hydrogen for use. After use, with suitable conditions, hydrogen can be re-stored and recycled, which is very convenient.
Therefore, metal hydride hydrogen storage, in today's energy field, such as hydrogen energy storage, has extremely high value and prospect, and is a good method for hydrogen storage.
First, the capacity is quite large. Metal hydrides have an exquisite structure, which can make the amount of hydrogen stored per unit mass or volume very abundant, far exceeding the ordinary method. For example, a certain type of metal hydride can store hydrogen in a compact state, which greatly reduces the space occupied by gaseous hydrogen storage, and the amount of hydrogen storage increases.
Second, good safety. Metal hydrides store hydrogen, hydrogen is bonded to metals, and is not free in gaseous state. In this way, during storage and transportation, the risk of hydrogen leakage, explosion, etc. is greatly reduced. That is, in case of external force, high temperature and other changes, hydrogen is also difficult to escape suddenly, causing disasters.
Third, good reversibility. When hydrogen is needed, apply appropriate temperature and pressure, and metal hydrides can release hydrogen for use. After use, with suitable conditions, hydrogen can be re-stored and recycled, which is very convenient.
Therefore, metal hydride hydrogen storage, in today's energy field, such as hydrogen energy storage, has extremely high value and prospect, and is a good method for hydrogen storage.

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