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Catalyst-free low temperature conversion of n-dodecane for co-generation of CO_x-free hydrogen and C_2 hydrocarbons using a gliding arc plasma

机译:使用滑弧等离子体等离子体进行无催化剂的正十二烷的低温转化,以共生成无CO_x的氢和C_2烃

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In this study, plasma reforming of n-dodecane for the co-generation of COx-free hydrogen and C-2 hydrocarbons at low temperature and ambient pressure has been investigated in a gliding arc discharge (GAD) reactor. The selective synthesis of H-2, C2H2 and C2H4 and the energy efficiency for n-dodecane conversion can be tuned by changing different processing parameters including the gas flow rate, n-dodecane concentration and input voltage. The highest selectivities of H-2 (76.7%), C2H2 (41.4%) and C2H4 (12.0%) were achieved with an n-dodecane conversion of 68.1%. The generation of mixed hydrogen, acetylene and ethylene offers the possibility for in-situ hydrogenation to enhance the selectivity of light olefins (e.g., ethylene) without prior gas separation. The plausible reaction mechanism and pathways in the plasma cracking of n-dodecane have been discussed through plasma emission spectroscopic diagnostics coupled with a comprehensive analysis of gas and liquid products. A strong correlation between the yield of C-2 hydrocarbons and the relative intensity of C-2 Swan bands was found, which suggests that C-2 Swan bands could be used as a valuable probe to understand the generation of C-2 hydrocarbons in the plasma reforming of hydrocarbon oils. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,已经在滑移电弧放电(GAD)反应器中研究了正十二烷的等离子体重整以在低温和环境压力下联产无COx的氢和C-2碳氢化合物。 H-2,C2H2和C2H4的选择性合成以及正十二烷转化的能量效率可以通过更改不同的工艺参数(包括气体流速,正十二烷浓度和输入电压)进行调整。 H-2(76.7%),C2H2(41.4%)和C2H4(12.0%)的最高选择性达到了正十二烷转化率68.1%。混合氢气,乙炔和乙烯的产生提供了原位氢化的可能性,以提高轻质烯烃(例如乙烯)的选择性,而无需事先进行气体分离。通过等离子体发射光谱诊断以及对气体和液体产物的综合分析,讨论了正十二烷等离子体裂化中可能的反应机理和途径。发现C-2碳氢化合物的产率与C-2天鹅带的相对强度之间有很强的相关性,这表明C-2天鹅带可以用作了解C-2天鹅带中C-2碳氢化合物生成的有价值的探针。烃油的等离子体重整。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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