Magnesium-based hydrogen storage alloy composite material with metal sulfide added
A magnesium-based hydrogen storage alloy and metal sulfide technology, which is applied in the field of magnesium-based hydrogen storage alloy composite materials, can solve the problems that the hydrogen desorption rate has not been significantly improved, the hydrogen desorption kinetics has not been significantly improved, and the kinetic performance is not ideal. , to achieve the effects of easy industrialization and promotion, easy operation and low cost
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Embodiment 1
[0025] Under an argon atmosphere, weigh an appropriate amount of magnesium powder with a particle size of 100 mesh and put it in a hydrogenation reactor, and keep it at 400 ° C for 1 h under a hydrogen pressure of 4 MPa to convert it into MgH 2 , cooled naturally to room temperature, taken out under the protection of argon atmosphere, and converted to hydrogenated MgH 2 Add MoS with a particle size of 100 mesh to the powder 2 The powder is mixed evenly according to the mass ratio of 10:1. The mixed powder is placed in a ball mill tank and ball milled under the protection of a hydrogen atmosphere. The ball quality is stainless steel. The ball mill is a Pulverisette 6 planetary ball mill, and the speed of the ball mill tank is 450 r / min , the ball to material mass ratio was 29:1, the intermittent time was 15 min, and the ball milling time was 1 h. After the ball milling, it was naturally cooled to room temperature and packaged in an argon atmosphere. The magnesium-based hydroge...
Embodiment 2
[0027] CeMg 3 The alloy was mechanically pulverized to 40 mesh under the protection of argon atmosphere, and an appropriate amount of powder was weighed and placed in a hydrogenation reactor, and kept at 300 ° C for 1 h under a hydrogen pressure of 3 MPa to convert it into CeH 3 and MgH 2 , cooled naturally to room temperature, and taken out under the protection of argon atmosphere. Under the protection of argon atmosphere, add CoS with a particle size of 200 mesh to the hydrogenated magnesium-based alloy powder. 2 The powder is mixed evenly according to the mass ratio of 10:3. The mixed powder is placed in a ball mill tank and ball milled under the protection of a hydrogen atmosphere. The ball quality is stainless steel. The ball mill is a Pulverisette 6 planetary ball mill. , the mass ratio of ball to material is 33:1, the intermittent time is 5 min, and the ball milling time is 3 h. After the ball milling, it is naturally cooled to room temperature and packaged in an argo...
Embodiment 3
[0029] PrMg 3 The alloy was mechanically pulverized to 70 mesh under the protection of a hydrogen atmosphere, and an appropriate amount of powder was weighed and placed in a hydrogenation reactor. 3 and MgH 2 , cooled naturally to room temperature, and taken out under the protection of argon atmosphere. Under the protection of argon atmosphere, MoS with a particle size of 100 mesh was added to the hydrogenated magnesium-based alloy powder. 2 The powder is mixed evenly according to the mass ratio of 5:1. The mixed powder is placed in a ball mill tank and ball milled under the protection of a hydrogen atmosphere. The ball quality is stainless steel. The ball mill is a Pulverisette 6 planetary ball mill. , the mass ratio of ball to material is 31:1, the intermittent time is 30 min, and the ball milling time is 2 h. After the ball milling is completed, it is naturally cooled to room temperature and packaged in an argon atmosphere. The magnesium-based hydrogen storage alloy comp...
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