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Study of the Behavior of Titanium Alloys as the Cathode for Photovoltaic Hydrogen Production

机译:钛合金作为光伏产氢阴极的行为研究

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CP-Ti and Ti-153 were adopted in this study to observe their electrochemical behavior in serving as the cathode for photovoltaic hydrogen production. The designed cyclic hydrogenation-solution heat treating processes were performed to increase the hydrogen uptake for both alloys. The results are as follows. (1) Both arsenic trioxide and thiourea showed hydrogenation promotive effect on CP-Ti, while thiourea was an inhibitor for Ti-153 under the applied conditions. (2) Arsenic trioxide showed hydrogenation promotive effect on both Ti-153 and CP-Ti in this study. (3) Ti-153 demonstrated superiority to CP-Ti when serves as the cathode for photovoltaic hydrogen production. The hydrogen mass payload for Ti-153 is 68 times larger than that for CP-Ti.
机译:本研究采用CP-Ti和Ti-153观察它们在用作光伏制氢阴极时的电化学行为。进行设计的循环加氢溶液热处理工艺以增加两种合金的氢吸收量。结果如下。 (1)三氧化二砷和硫脲都对CP-Ti表现出加氢促进作用,而硫脲在应用条件下是Ti-153的抑制剂。 (2)在本研究中,三氧化二砷对Ti-153和CP-Ti均显示出氢化促进作用。 (3)Ti-153在用作光伏制氢的阴极时表现出优于CP-Ti的优势。 Ti-153的氢质量有效载荷比CP-Ti大68倍。

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