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    • 7. 发明授权
    • Method and apparatus for achieving maximum yield in the electrolytic preparation of group IV and V hydrides
    • 在IV族和V型氢化物的电解制备中获得最大产率的方法和装置
    • US08021536B2
    • 2011-09-20
    • US11687947
    • 2007-03-19
    • Reinaldo Mario MachadoChristopher L. HartzJames E. HollenRebecca J. MohrGeorge L. Ryals
    • Reinaldo Mario MachadoChristopher L. HartzJames E. HollenRebecca J. MohrGeorge L. Ryals
    • C25B7/00C25B1/00C25B1/20
    • C25B1/00C23C16/4488C25B15/08
    • A method for generating a hydride gas of metal M1 in an electrochemical cell comprising a cathode comprising metal M1, a sacrificial anode comprising metal M2, an initial concentration of aqueous electrolyte solution comprising a metal hydroxide, M3OH, wherein the sacrificial metal anode electrochemically oxidizes in the presence of the aqueous electrolyte solution comprising M3OH to form a metal salt, and the hydride gas of metal M1 is formed by reducing the metal M1 of the cathode. The method comprises the steps of determining solubility profile curves of the metal salt as the M3OH is consumed and the metal oxide is formed by the oxidation reaction at various concentrations of M3OH; determining a maximum concentration of M3OH that, as it is consumed, does not yield a concentration of metal salt that precipitates out of the electrolyte solution; and choosing a concentration of M3OH that is in the range of at and within 5% less than the maximum concentration of M3OH to be the initial concentration of M3OH.
    • 一种用于在电化学电池中产生金属M1的氢化物气体的方法,包括:包含金属M1的阴极,包含金属M2的牺牲阳极,包含金属氢氧化物的初始浓度的电解质水溶液,M3OH,其中牺牲金属阳极电化学氧化 含有M3OH的电解质水溶液的存在形成金属盐,通过还原阴极的金属M1形成金属M1的氢化物气体。 该方法包括以下步骤:测定当M3OH被消耗时金属盐的溶解度曲线曲线,并且通过在不同浓度的M3OH下的氧化反应形成金属氧化物; 确定在消耗时不会产生从电解液中析出的金属盐浓度的M3OH的最大浓度; 并选择在M3OH的最大浓度以下且小于5%的范围内的M3OH浓度成为M3OH的初始浓度。