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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Hydrogen production by conversion of ethanol injected into a microwave plasma
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Hydrogen production by conversion of ethanol injected into a microwave plasma

机译:通过将乙醇转化为微波等离子体的乙醇产生氢气产生

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摘要

Reforming of gaseous and liquid hydrocarbon compounds into hydrogen is of high interest. In this paper we present a microwave (2.45 GHz) plasma-based method for hydrogen production by conversion of ethanol (C2H5OH) in the thermal reforming process in nitrogen plasma. In contrast to our earlier investigations, in which C2H5OH vapour was supplied into the microwave plasma region either in the form of a swirl or axial flow, in this experiment we injected C2H5OH vapour directly into the nitrogen microwave plasma flame, behind the microwave plasma generation region. The experimental results were as follows. At an absorbed microwave power of 5 kW, N-2 (plasma-generating gas) swirl flow rate of 2700 NL(N-2)/h and C2H5OH mass flow rate of 2.7 kg(C2H5OH)/h the hydrogen production rate was 1016 NL(H-2)/h, which corresponds to the energy yield of hydrogen production 203 NL(H-2)/kWh. After the C2H5OH conversion the outlet gas contained 27.6% (vol.) H-2, 10.2% CO, 0.2% CO2, 4.8% CH4, 4.3% C2H2, 3.7% C2H4 and 3.7% C2H6. These results are comparable to those obtained in our earlier investigations, in which different methods of C2H5OH vapour supply to the microwave plasma generation region were employed.
机译:将气态和液态烃化合物转化为氢气具有高兴趣。本文通过在氮血浆中的热重整过程中转化乙醇(C2H5OH),介绍了基于微波(2.45GHz)等离子体的氢气产生方法。与我们之前的研究相比,其中C2H5OH蒸汽以涡流或轴流的形式供应到微波血浆区域中,在该实验中,我们将C 2 H 5 OH蒸气直接注入氮微波等离子体火焰中,在微波等离子体产生区域后面。实验结果如下。在5 kW的吸收微波功率下,N-2(等离子体产生气体)旋流流动速率为2700nl(n-2)/ h和c 2 H 50 oh质量流速为2.7kg(c 2 H 5 OH)/ h的氢气产生率为1016 NL(H-2)/ h对应于氢气产生的能量产率203nl(H-2)/ kWh。在C 2 H 5OH转化后,出口气体含有27.6%(V体积)H-2,10.2%CO,0.2%CO 2,4.8%CH 4,4.3%C 2 H 2,3.7%C 2 H 4和3.7%C 2 H 6。这些结果与我们之前研究中获得的结果相当,利用了对微波血浆产生区域的C2H5OH蒸气供应的不同方法。

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