...
首页> 外文期刊>Waste Disposal & Sustainable Energy >Green hydrogen from bio-ethanol reforming using micro plasma
【24h】

Green hydrogen from bio-ethanol reforming using micro plasma

机译:使用微等离子体的生物乙醇重整的绿色氢

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Abstract Hydrogen is a kind of energy source with a characteristic of high calorific value and plasma is regarded as a good method of hydrogen production. Hydrogen produced from ethanol reforming using micro plasma can be utilized for portable applications. The study introduces water/carbon ratio, residence time, and ethanol mass flow rate as the parameters of experimental conditions, and makes ethanol conversion, gas production rate, gas product selectivity, energy consumption, and efficiency of hydrogen production per unit as the evaluation parameters of ethanol reforming reaction. The experimental results showed that (1) in the argon micro plasma: the maximum ethanol conversion of 25.3% was obtained at residence time?=?2.1?ms, ethanol mass flow rate?=?0.01?g/s and S/C?=?1.0, and the peak value of hydrogen production of 18.7?μmol/s was achieved at residence time?=?2.1?ms, ethanol mass flow rate?=?0.05?g/s and S/C?=?1.0; (2) in the air micro plasma: the maximum ethanol conversion of 37.4% was obtained at residence time?=?2.1?ms, ethanol mass flow rate?=?0.01?g/s and S/C?=?1.0, and the peak value of hydrogen production of 36.8?μmol/s was achieved at residence time?=?2.1?ms, ethanol mass flow rate?=?0.03?g/s and S/C?=?3.0. These experimental results showed that the microreactor can substantially reduce the volume of the device while producing a large amount of output.
机译:抽象氢是一种具有高热量值的特征,血浆被认为是氢生产的良好方法。使用微等离子体通过乙醇改革产生的氢可以用于便携式应用。该研究介绍了水/碳比,停留时间和乙醇质量流量作为实验条件的参数,并使乙醇转化,气体产量,气体产品选择性,能源消耗以及每单位氢生产的效率作为评估参数乙醇改革反应。实验结果表明,(1)在氩微等离子体中:在停留时间获得25.3%的最大乙醇转化率?=?2.1?ms,乙醇质量流量?=?0.01?g/s和s/c? =?1.0,在停留时间实现18.7?μmol/s的氢产量的峰值?=?2.1?ms,乙醇质量流量?=?0.05?g/s和s/c和s/c?=?=?1.0; (2)在空气微等离子体中:在停留时间获得37.4%的最大乙醇转化率?=?2.1?ms,乙醇质量流量?=?0.01?g/s和s/s和s/c?=?1.0,和在停留时间实现了36.8?μmol/s的氢产量的峰值?=?2.1?ms,乙醇质量流量?=?0.03?g/s和s/c?=?=?3.0。这些实验结果表明,微反应器可以在产生大量输出的同时大大减少设备的体积。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号