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Effect of microwave plasma torch on the pyrolysis fuel oil in the presence of methane and ethane to increase hydrogen production

机译:在甲烷和乙烷存在下微波等离子体炬对热解燃料油的影响以增加产氢量

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摘要

Pyrolysis fuel oil (PFO) processing by microwave plasma torch was developed for the production of hydrogen. The PFO cracking process was performed at atmospheric pressure in the absence of catalyst and effect of plasma gas on the production rate of hydrogen and light hydrocarbons (C_2-C_4) was evaluated. In the first step, effect of the applied power and the working gas flow rate was investigated. In the second step, the applied power and working gas rate were set to 650 W and 4000 sccm, respectively, which were provided by combining methane or ethane as 0%, 2.5%, 7.5%, and 20% with argon. By increasing the percentage of the existing methane in argon, production rate of the sum of the light hydrocarbons was increased and that of hydrogen was reduced, but it was more than the case when argon was applied alone. By increasing ethane percentage, hydrogen production and light hydrocarbon rate were increased. The best conditions of the plasma gas for producing hydrogen at the power of 650 W were obtained as 5CC PFO feed, 2500 sccm (80%) argon, and 500 sccm (20%). The hydrogen production rate in optimized conditions was 2343.16SCCM with selectivity of 84.41%. Sum of the obtained hydrocarbons in this test was 434.25 sccm. Another parameter in the present study was the feed volume processed by plasma. In this case, 5 cc, 3 cc, and 1 cc of the feed were tested when the plasma gas was 3000 sccm argon with the power of 650 W. The results showed that, by increasing the feed, the products were increased. In the processing of 5 cc feed with plasma, 896.41 sccm hydrogen and 61 sccm light hydrocarbon were produced.
机译:开发了利用微波等离子炬处理热解燃料油(PFO)来生产氢气。 PFO裂解过程是在没有催化剂的情况下在大气压下进行的,并评估了等离子气体对氢气和轻烃(C_2-C_4)的产率的影响。第一步,研究施加功率和工作气体流量的影响。在第二步中,通过将甲烷或乙烷(分别为0%,2.5%,7.5%和20%)与氩气混合提供的功率和工作气体速率分别设置为650 W和4000 sccm。通过增加氩气中现有甲烷的百分比,可以提高轻烃总量的生产率,并降低氢气的生产率,但比单独使用氩气的生产率更高。通过增加乙烷百分比,增加了产氢量和轻烃率。作为5CC PFO进料,2500 sccm(80%)氩气和500 sccm(20%)的功率,可获得功率为650 W的氢气的等离子体气体的最佳条件。优化条件下的产氢率为2343.16SCCM,选择性为84.41%。在该测试中获得的烃的总和为434.25sccm。本研究中的另一个参数是血浆处理的进料量。在这种情况下,当等离子气体为650 W的功率为3000 sccm的氩气时,分别测试了5 cc,3 cc和1 cc的进料。结果表明,通过增加进料,可以增加产物。在用等离子体处理5 cc进料的过程中,产生了896.41 sccm的氢气和61 sccm的轻质烃。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第33期|18812-18819|共8页
  • 作者单位

    Laser and Plasma Research Institute and the Department of Physics, Shahid Beheshti University, G.C., Evin,19839-63113 Tehran, Islamic Republic of Iran;

    Laser and Plasma Research Institute and the Department of Physics, Shahid Beheshti University, G.C., Evin,19839-63113 Tehran, Islamic Republic of Iran;

    Laser and Plasma Research Institute and the Department of Physics, Shahid Beheshti University, G.C., Evin,19839-63113 Tehran, Islamic Republic of Iran;

    Laser and Plasma Research Institute and the Department of Physics, Shahid Beheshti University, G.C., Evin,19839-63113 Tehran, Islamic Republic of Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microwave plasma torch; Pyrolysis fuel oil; Conversion; Hydrogen production;

    机译:微波等离子炬;热解燃料油;转换;制氢;
  • 入库时间 2022-08-18 00:24:24

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