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摘要:
In this paper,the optimization of hydrogen (H2) production by ammonia borane (NH3BH3) over PdCoAg/AC was investigated using the response surface methodology.Besides,the electro-oxidation of NH3BH3 was determined and optimized using the same method to measure its potential use in the direct ammonium boran fuel cells.Moreover,the temary alloyed catalyst was synthesized using the chemical reduction method.The synergistic effect between Pd,Co and Ag plays an important role in enhancement of NH3BH3 hydrolysis.In addition,the support effect could also efficiently improve the catalytic performance.Furthermore,the effects of NH3BH3 concentration (0.1-50 mmol/5 mL),catalyst amount (1-30 mg) and temperature (20℃-50℃) on the rate of H2 production and the effects of temperature (20℃-50℃),NH3BH3 concentration (0.05-1 mol/L) and catalyst amount (0.5-5 μL) on the electro-oxidation reaction of NH3BH3 were investigated using the central composite design experimental design.The implementation of the response surface methodology resulted in the formulation of four models out of which the quadratic model was adjudged to efficiently appropriate the experimental data.A further statistical analysis of the quadratic model demonstrated the significance of the model with a pvalue far less than 0.05 for each model and coefficient of determination (R2) of 0.85 and 0.95 for H2 production rate and NH3BH3 electrroxidation peak current,respectively.
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篇名 A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology
来源期刊 能源前沿 学科
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年,卷(期) 2020,(3) 所属期刊栏目
研究方向 页码范围 578-589
页数 12页 分类号
字数 语种 英文
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2095-1701
11-6017/TK
北京市朝阳区惠新东街4号富盛大厦15层
eng
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