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Non-thermal gliding-arc plasma reforming of dodecane and hydroprocessed renewable diesel

机译:十二烷和加氢处理的可再生柴油的非热滑弧等离子体重整

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This paper focuses on reforming dodecane and hydroprocessed renewable diesel to hydrogen rich gas in a non-thermal gliding-arc plasma stabilized in a reverse vortex flow reformer. The liquid fuels were directly injected into the reaction chamber using an ultrasonic nozzle and entrained in the reverse vortex flow before passing through the plasma. Initial parametric tests were used to investigate the individual effects of varying power input, steam to carbon ratio, and equivalence ratio on reformer performance. Subsequent factorial tests varied these parameters to identify optimal specific energy requirements. Optimal reforming conditions for dodecane, a model diesel compound, resulted in specific energy requirements of 134.1 +/- 1.1 kJ mol(-1) H-2 produced, a H-2 yield of 65.0 +/- 0.02%, and an efficiency of 37.0 +/- 0.02%. Optimal conditions for hydroprocessed renewable diesel resulted in a specific energy requirement of 176.1 +/- 3.8 kJ mol(-1) H-2 produced, a H-2 yield of 64.2 +/- 1.7%, and an efficiency of 35.0 +/- 1.0% at 95% confidence intervals. Physical operating boundaries due to arc extinction were identified. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文着重于在逆涡流重整器中稳定的非热滑弧电弧等离子体中将十二烷和加氢处理的可再生柴油重整为富氢气体。使用超声波喷嘴将液体燃料直接注入反应室,并在通过等离子体之前夹带逆涡流。最初的参数测试用于研究变化的功率输入,蒸汽碳比和当量比对重整器性能的单独影响。随后的阶乘测试改变了这些参数,以确定最佳的特定能量需求。十二烷(一种典型的柴油化合物)的最佳重整条件导致产生的比能为134.1 +/- 1.1 kJ mol(-1)H-2,H-2的产率为65.0 +/- 0.02%,效率为37.0 +/- 0.02%。加氢处理的可再生柴油的最佳条件导致产生的比能量需求为176.1 +/- 3.8 kJ mol(-1)H-2,H-2产率为64.2 +/- 1.7%,效率为35.0 +/-在95%置信区间内为1.0%。确定了由于电弧熄灭引起的物理操作边界。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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