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Adsorption of hydrogen on activated carbons prepared by thermal activation : Hydrogen storage

机译:热活化制备的活性炭对氢气的吸附:储氢

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Microporous activated carbons were prepared from date pits using thermal activation with CO2 or steam. The adsorbents were characterized by N2 and CO2 adsorption at 77 K and 273K, respectively. The H2 adsorption was measured at 298K and 100 bar using a volumetric equipment. To increase the hydrogen storage, activated carbons are doped by metals. The results show that the H2 adsorption capacity is influenced by the size and volume of micropores in the activated carbon adsorbent. A relationship between hydrogen adsorption capacity calculated using Langmuir isotherm and the volume of narrow micropores deduced from the CO2 adsorption isotherm at 273 K was found. A correlation was also found between both micropore volumes and the amount of hydrogen adsorbed at 298 K and 100 bar. Additionally, vanadium doping of activated carbons could positively influence hydrogen adsorption.
机译:使用具有CO的热激活,从日期凹坑制备微孔活化碳 2 或蒸汽。吸附剂的特征在于n 2 和co. 2 77 k和273k的吸附。 H. 2 使用体积设备在298K和100巴下测量吸附。为了增加储氢,由金属掺杂活性碳。结果表明h 2 吸附能力受活性碳吸附剂中微孔的大小和体积的影响。利用郎梅等温线计算的氢吸附能力与来自CO中推断的窄微孔体积的关系 2 发现了273 k处的吸附等温线。在微孔体积和吸附在298k和100巴的氢气之间也发现了相关性。另外,活性碳的钒掺杂可以积极影响氢吸附。

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