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Study of hydrogen production and storage based on aluminum-water reaction

机译:基于铝水反应的制氢与储氢研究

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The rate and yield of hydrogen production from the reaction between activated aluminum and water has been investigated. The effect of different parameters such as water -aluminum ratio, water temperature and aluminum particle size and shape was studied experimentally. The aluminum activation method developed in-house involves l%-2.5% of lithium-based activator which is diffused into the aluminum particles, enabling sustained reaction with tap water or sea water at room temperature. Hydrogen production rates in the range of 200-600 ml/min/g Al, at a yield of about 90%, depending on operating parameters, were demonstrated. The work further studied the application in proton exchange membrane (PEM) fuel cells in order to generate green electric energy, demonstrating theoretical specific electric energy storage that can exceed batteries by 10 -20 folds.
机译:已经研究了由活性铝与水反应生成氢的速率和产率。实验研究了水铝比,水温和铝的粒径和形状等不同参数的影响。内部开发的铝活化方法涉及1%-2.5%的锂基活化剂,该活化剂扩散到铝颗粒中,从而可以在室温下与自来水或海水持续反应。氢气的生产速度在200-600 ml / min / g Al范围内,取决于操作参数,产率约为90%。这项工作进一步研究了在质子交换膜(PEM)燃料电池中的应用,以产生绿色电能,证明了理论上比电能的存储量可以超过电池10 -20倍。

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