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Combined molten salt-Ni/Al2O3 as synergistic medium for high-quality syngas production

机译:熔融盐-Ni / Al2O3的组合作为增效介质,可生产高质量的合成气

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Proposed synergistic use of a combined medium of molten salt and Ni/Al2O3 (MS-Ni) was investigated for its enhancement of cellulose pyrolysis for high-quality syngas production. Clean renewable solar energy is to be stored at a high temperature in molten salt (MS) and provides the heat of pyrolysis. The MS-Ni medium could increase Hy yield by 3-folds while CO yield slightly increased by 15%, compared to the case of only MS medium. The peak rate of Hy production nearly quadrupled while the peak rate of CO production increased 2.5 times at about 150 and 80 K lower temperatures, respectively. The ratio of selectivity of syngas to undesired CH4 was nearly doubled. Arrhenius rate expressions for pseudo-first-order pyrolytic reaction are derived from the experimental data to give activation energies of 206 and 128 kJ mol(-1) for the MS and the MS-Ni mediums, respectively. The experimental results clearly validated the role of MS-Ni as a synergistic medium for high-quality syngas production from cellulosic biomass pyrolysis. (C) 2014 Elsevier B.V. All rights reserved.
机译:研究了熔融盐和Ni / Al2O3(MS-Ni)混合介质的拟议协同使用,以提高纤维素热解的质量,从而生产高质量的合成气。清洁的可再生太阳能将以高温形式存储在熔融盐(MS)中,并提供热解热。与仅MS培养基相比,MS-Ni培养基可将Hy产量提高3倍,而CO产量则微增15%。 Hy的峰值速率几乎增加了三倍,而CO的峰值速率分别在大约150和80 K的较低温度下增加了2.5倍。合成气与不希望的CH4的选择性之比几乎增加了一倍。从实验数据推导拟一级热解反应的阿累尼乌斯速率表达式,分别得出MS和MS-Ni介质的活化能分别为206和128 kJ mol(-1)。实验结果清楚地证明了MS-Ni作为纤维素生物质热解生产高质量合成气的协同介质的作用。 (C)2014 Elsevier B.V.保留所有权利。

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