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首页> 外文期刊>International journal of hydrogen energy >Hydrogen storage on pyrolyzed chicken feather fibers
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Hydrogen storage on pyrolyzed chicken feather fibers

机译:氢解鸡羽毛纤维上的氢存储

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摘要

Pyrolyzed chicken feather fibers (PCFF) that were prepared by two-step process (215 C/ 15 h + 400-450 ℃/1 h) demonstrated a significant H_2 adsorption uptake due to their microporous nature. Considering their large availability, cost and H_2 storage capability, PCFF can be a significant, environmentally friendly and bio-renewable candidate to address the H_2 storage problem. A wide range of microporosities was obtained when the second step pyrolysis temperature was maintained between 400 and 450 ℃ for 0.5-2 h. The optimal H_2 storage was obtained using 1 h pyrolysis in this temperature range. The maximum excess H_2 storage capacity was 1.5 wt% at 77 K and at pressures below 2 MPa. The notable H_2 adsorption of PCFF below 1 MPa can be justified by the abundance of microporosity, and the nanopores available for H_2 penetration. The estimated adsorption energy for PCFFs, 5-6 kJ/mol was in the range of typical physisorption materials indicating the easy recovery of H_2.
机译:通过两步法(215 C / 15 h + 400-450℃/ 1 h)制备的热解鸡羽毛纤维(PCFF)由于其微孔性质而显示出显着的H_2吸收。考虑到它们的高可用性,成本和H_2存储能力,PCFF可以是解决H_2存储问题的重要,环保和生物可再生的候选产品。当第二步热解温度在400至450℃之间保持0.5-2 h时,获得了宽范围的微孔。在此温度范围内,热解1 h可获得最佳的H_2储存量。在77 K和低于2 MPa的压力下,最大过剩H_2储存容量为1.5 wt%。低于1 MPa的PCFF的明显H_2吸附可以通过大量的微孔和可用于H_2渗透的纳米孔来证明。 PCFFs的估计吸附能量为5-6 kJ / mol,处于典型的物理吸附材料范围内,表明H_2易于回收。

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