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Enhanced Gamma-Ray Energy Conversion in Water Vessels— Part Ⅱ: Hydrogen Production by Water Radiolysis

机译:水容器中增强的伽马射线能量转换—第二部分:水分解产生的氢

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A technique has been proposed to increase the efficiency of hydrogen production from water by gamma-ray radiolysis as an effective use of radioactive waste. This is possible by putting special metal structures into water to enhance the conversion of mega-electron-volt-range gamma rays to low-energy electrons, which escape from metal into water. The experimental results showed that hydrogen production could be significantly enhanced by carefully controlling the thickness of metal components and the proximity with adjacent metal components. A honeycomb-like structure composed of stainless steel tubes was confirmed to provide the best performance for hydrogen production. These experimental results successfully demonstrated that the modification of metal structure can control the energy and the number of electrons escaping from the metal and actually leads to enhancement of hydrogen production in water.
机译:已经提出了一种技术来提高通过伽马射线辐射分解从水中产生氢的效率,作为放射性废物的有效利用。通过将特殊的金属结构放入水中以增强兆电子伏特级伽马射线到低能电子的转换成为可能,低能电子从金属逃逸到水中。实验结果表明,通过仔细控制金属部件的厚度和与相邻金属部件的接近度,可以显着提高制氢量。证实由不锈钢管组成的蜂窝状结构可为制氢提供最佳性能。这些实验结果成功地证明,金属结构的改性可以控制能量和从金属逸出的电子的数量,并实际上导致水中氢的产生增加。

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