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首页> 外文期刊>International journal of hydrogen energy >Microstructure and low-temperature hydrogen storage capacity of ball-milled graphite
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Microstructure and low-temperature hydrogen storage capacity of ball-milled graphite

机译:球磨石墨的组织和低温储氢能力

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Hydrogen adsorption in ball-milled graphite is investigated in the low temperature range from 110 to 35 K and at pressures up to 20 MPa. The adsorption data are compared to the results of detailed quantitative microstructural analyses of the samples used for the adsorption experiments. The amount of hydrogen adsorbed at temperatures well below 77 K exceeds considerably that what is expected from adsorption on plane graphitic planes. The results can be explained assuming the following mechanisms: (ⅰ) adsorption in trapping states on plane surfaces at and below 110 K; (ⅱ) adsorption in small micropores with diameter of less than 1 nm at 77 K and pressure of 10 MPa, and (ⅲ) multilayer adsorption in mesopores at temperatures from 35 to 40 K and pressure of 2 MPa. The effects observed in the low temperature range are reversible and make the investigated material interesting as a supporting component for liquid hydrogen storage systems.
机译:在110至35 K的低温范围和最高20 MPa的压力下研究了球磨石墨中的氢吸附。将吸附数据与用于吸附实验的样品的详细定量微观结构分析结果进行比较。在远低于77 K的温度下吸附的氢量大大超过了在石墨平面上的吸附量。可以通过以下机理解释结果:(ⅰ)在110 K及以下的平面上以捕获状态吸附。 (ⅱ)在77 K和10 MPa的压力下直径小于1 nm的小微孔中的吸附,和(ⅲ)在35至40 K的温度和2 MPa的压力下在中孔中的多层吸附。在低温范围内观察到的影响是可逆的,这使得所研究的材料成为液氢存储系统的支撑组分变得有趣。

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