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The reaction process of hydrogen absorption and desorption on the nanocomposite of hydrogenated graphite and lithium hydride

机译:氢化石墨与氢化锂纳米复合材料上氢吸附与解吸的反应过程

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The lithium-carbon-hydrogen (Li-C-H) system is composed of hydrogenated nanostructural graphite (C~(nano)H_x) and lithium hydride (LiH). C~(nano)H_x is synthesized by ball-milling of graphite under a hydrogen atmosphere. In this work, the reaction process of hydrogen absorption and desorption on the Li-C-H system is investigated. The C~(nano)H_x-LiH composite can desorb about 5.0 mass% of hydrogen at 350℃ with the formation of Li_2C_2 until the second cycle. However, the hydrogen desorption amount significantly decreases from the third cycle. Furthermore, it is shown by using gas chromatography that a considerable amount of hydrocarbons is desorbed during the rehydrogenation process. These results indicate that the amount of reaction between the polarized C-H groups in C~(nano)H_x and LiH is reduced due to a decrease in the C-H groups by losing carbon atoms under the hydrogen absorption and desorption cycles.
机译:锂碳氢(Li-C-H)系统由氢化纳米结构石墨(C〜(nano)H_x)和氢化锂(LiH)组成。 C〜(nano)H_x是在氢气气氛下通过球磨石墨而合成的。在这项工作中,研究了Li-C-H体系中氢吸收和解吸的反应过程。 C〜(nano)H_x-LiH复合材料可在350℃下解吸约5.0质量%的氢,并形成Li_2C_2直至第二个循环。但是,氢解吸量从第三循环开始显着降低。此外,通过使用气相色谱法表明,在再氢化过程中大量的烃被解吸。这些结果表明,由于在氢的吸收和解吸循环下碳原子的丢失导致C-H基团的减少,C_(nano)H_x中极化的C-H基团与LiH之间的反应量减少了。

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