Long-service-life high-capacity vanadium-based hydrogen storage alloy and hydrogenation pulverizing method thereof
A hydrogen storage alloy, high-capacity technology, applied in chemical instruments and methods, hydrogen, inorganic chemistry, etc., can solve the problems that affect the hydrogen absorption and release of hydrogen diffusion in alloys, low hydrogen storage capacity, and difficulty in alloy powder making, etc., to avoid flakes. It has the advantages of particle generation with a similar structure, high hydrogen absorption and desorption capacity at room temperature, and suitable hydrogen absorption and desorption platform.
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Embodiment 1
[0032] The alloy composition is V 78 Ti 8 Al 1 Mn-1at%Ce, with pure metal vanadium, aluminum, titanium, manganese, cerium as the starting material, the purity of each element is higher than 99%, according to the nominal composition V 78 Ti 8 Al 1 Mn-1at% Ce ingredients, under the protection of high-purity argon (99.999%), use a vacuum non-consumable electric arc furnace to turn over and smelt 5 times to obtain an as-cast alloy; then anneal it at 1200 ° C for 24 hours under the protection of an inert gas , and do quenching treatment, quickly lower to room temperature, and make a hydrogen storage alloy ingot with a weight of about 40g. The alloy ingot was placed in the sample tank, vacuumed for 30 minutes, then heated to 200°C, hydrogen was slowly passed through the sample chamber at a rate of 80 mL / min for 5 minutes, and kept warm for 0.5 hours, so that the sample absorbed hydrogen evenly. Continue to heat up to 400°C and vacuumize for 1 hour to dehydrogenate, and finally ...
Embodiment 2
[0036] The alloy composition is V 80 Ti 6 Al 1 Cu-1at%Ce, with pure metal vanadium, titanium, aluminum, copper, cerium as the starting material, the purity of each element is higher than 99%, according to the nominal composition V 80 Ti 6 Al 1The Cu-1at%Ce batch was then smelted into an alloy ingot weighing approximately 40g. The alloy ingot smelting method, hydrogenation pulverization method and structure analysis method are the same as in Example 1. Get V 80 Ti 6 al 1 2g of Cu-1at%Ce alloy powder was used for hydrogen absorption and desorption performance test. The activation conditions of the alloy are as follows: evacuate at room temperature for 1 h, conduct hydrogen absorption kinetics test under 7 MPa hydrogen gas, and the initial pressure of the hydrogen release test system is 0.1 MPa.
[0037] The test results show that the first hydrogen absorption kinetics of the alloy after vacuuming at room temperature is good, the maximum hydrogen absorption capacity reac...
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