Low-temperature reversible hydrogen storage magnesium based composite material
A composite material and hydrogen storage technology, which can be applied in hydrogen separation, using liquid contact hydrogen separation, etc., can solve problems such as limiting the practical application of Mg hydride, reducing hydrogen absorption and desorption temperature, and decreasing hydrogen storage capacity.
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[0009] The low-temperature reversible hydrogen storage magnesium-based composite material contains (by weight) 1.5% nano-titanium oxide (TiO 2 ), 1.96% Cr, 8.92% Ni, remaining Mg. Mix Ni powder, Cr powder and part of Mg powder according to the ratio of material composition according to the atomic ratio of 0.8:0.2:2, cold press into a block under the pressure of 500MPa, and then sinter at 500°C in an argon atmosphere to make Mg 2 Ni 0.8 Cr 0.2 alloy. Then the sintered and pulverized Mg 2 Ni 0.8 Cr 0.2 Alloy powder and quantitative nano TiO 2 Mix with the remaining Mg powder evenly by ball milling, and hydrogenate completely at 300°C and 4MPa hydrogen pressure. The hydrogenated powder was put into a stainless steel ball mill tank at a ball-to-material ratio of 20:1, and was subjected to high-energy ball milling in an argon atmosphere for 50 hours to prepare a composite material. Before the first hydrogen absorption and desorption experiment, the composite material sample...
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