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Effect of Lorentz force on hydrogen production in water electrolysis employing multielectrodes
Ming Yuan Lin, Wen Nong Hsu, Lih Wu Hourng,
Teng Shih Shih
, Chien Ming Hung
機械工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
17
引文 斯高帕斯(Scopus)
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深入研究「Effect of Lorentz force on hydrogen production in water electrolysis employing multielectrodes」主題。共同形成了獨特的指紋。
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Keyphrases
Bubble Layer
50%
Current Difference
25%
Decomposition Voltage
25%
Electrode Spacing
50%
Electrolysis
100%
Electrolysis Parameters
25%
Electrolyte Concentration
25%
Electrolytic Cell
50%
Flow Field
25%
Gas Bubble
100%
Gas Mass Flow
25%
Gas Production
75%
Gas Yield
25%
High Efficiency
25%
High-speed Camera
25%
Hydrogen Gas
25%
Hydrogen Production
100%
I-V Curve
25%
KOH Electrolyte
75%
Layer Thickness
50%
Lorentz Force
100%
Magnetic Field
50%
Magnetic Flow
25%
Multi-electrode
100%
Multiple Electrodes
25%
Parallel Electrode
25%
Single Electrode
25%
Single-electrode Mode
25%
Water Electrolysis
100%
Engineering
Decomposition Voltage
25%
Electrolyte Concentration
25%
Electrolytic Cell
50%
Flow Distribution
25%
Gas Bubble
100%
Gas Production
75%
Hydrogen Gas
25%
Hydrogen Production
100%
Layer Thickness
50%
Lorentz Force
100%
Magnetic Field
50%
Speed Camera
25%
Water Electrolysis
100%
Chemical Engineering
Hydrogen Production
100%