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Effect of activated carbons derived from different precursors on the hydrogen sorption properties of magnesium

机译:不同前体来源的活性炭对镁氢吸附性能的影响

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The absorption-desorption characteristics towards hydrogen of obtained by ball milling under argon atmosphere magnesium based composites (containing respectively 95 wt% Mg and 5 wt% activated carbon (AC) derived from bean pods (BP), apricot stones (AS) and mixture of coal tar pitch and furfural (CTPF)), were investigated. Actually there is no substantial difference between the rate of hydriding and the absorption capacity for magnesium composite with AC derived from apricot stones, and for magnesium composite with AC derived from a mixture of coal tar pitch and furfural — the capacity is 6.13 wt% for the former and 5.98 wt% for the latter. More significant difference between the investigated composites was observed for the dehydriding process. The magnesium composite with synthetic carbon (from furfural and coal tar pitch) desorbs at 623 K and 0.15 MPa and the absorbed hydrogen about twice faster than magnesium composite with AC from bean pods. The activated carbon derived from a mixture of coal tar pitch and furfural has the highest specific surface area, and obviously this characteristic has important influence especially on the dehydriding kinetics of magnesium.
机译:在氩气气氛下通过球磨获得的镁基复合材料(分别含有95 wt%的Mg和5 wt%的由豆荚(BP),杏子石(AS)制成的活性炭(AC)及其混合物)对氢的吸收解吸特性。研究了煤焦油沥青和糠醛(CTPF)。实际上,从杏石中得到的带有AC的镁复合材料和从煤焦油沥青和糠醛的混合物中得到的带有AC的镁复合材料的氢化率和吸收容量之间并没有实质性的区别-吸附量为6.13 wt%。前者为5.98 wt%,后者为5.98 wt%。在脱水过程中,观察到的复合材料之间存在更大的差异。含合成碳的镁复合物(来自糠醛和煤焦油沥青)在623 K和0.15 MPa下解吸,吸收的氢比豆荚中含AC的镁复合物快约两倍。由煤焦油沥青和糠醛的混合物衍生的活性炭具有最高的比表面积,并且显然该特性尤其对镁的脱水动力学具有重要的影响。

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