A method for preparing porous metal iron
A technology of porous metal and ferric nitrate, applied in the field of preparation of transition metal porous materials, can solve the problems of limited scale production, high brittleness of porous materials, difficult industrial production, etc., and achieves the effects of low cost, reduced reduction reaction temperature, and uniform distribution.
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Embodiment 1
[0021] Weigh 0.025 moles of ferric nitrate and 0.0125 moles of glycine, dissolve the raw materials in deionized water, and prepare a solution; place the solution on a temperature-controllable electric furnace for heating, and the solution undergoes a series of reactions such as volatilization, concentration, and decomposition to obtain Porous precursor: put the porous precursor into a tube furnace, pass through hydrogen, and reduce at 700° C. for 2 hours to obtain porous metallic iron with a porosity of 68%.
Embodiment 2
[0023] Weigh 0.025 moles of ferric nitrate and 0.015 moles of alanine, dissolve the raw materials in deionized water, and prepare a solution; place the solution on a temperature-controllable electric furnace for heating, and after the solution undergoes a series of reactions such as volatilization, concentration, and decomposition, A porous precursor was obtained; the porous precursor was placed in a tube furnace, fed with hydrogen, and reduced at 750° C. for 2 hours to obtain porous metal iron with a porosity of 62%.
Embodiment 3
[0025] Weigh 0.025 moles of ferric nitrate and 0.025 moles of urea, dissolve the raw materials in deionized water, and prepare a solution; place the solution on a temperature-controllable electric furnace for heating, and the solution undergoes a series of reactions such as volatilization, concentration, and decomposition to obtain Porous precursor: put the porous precursor into a tube furnace, pass through hydrogen, and reduce at 800° C. for 2 hours to obtain porous metallic iron with a porosity of 65%.
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