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Temperature Control during Regeneration of Activated Carbon Fiber Cloth with Resistance-Feedback

机译:电阻反馈再生活性炭纤维布再生过程中的温度控制

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摘要

Electrothermal swing adsorption (ESA) of organic compounds from gas streams with activated carbon fiber cloth (ACFC) reduces emissions to the atmosphere and recovers feedstock for reuse. Local temperature measurement (e.g., with a thermocouple) is typically used to monitor/control adsorbent regeneration cycles. Remote electrical resistance measurement is evaluated here as an alternative to local temperature measurement. ACFC resistance that was modeled based on its physical properties was within 10.5% of the measured resistance values during electrothermal heating. Resistance control was developed based on this measured relationship and used to control temperature to within 2.3% of regeneration set-point temperatures. Isobutane-laden adsorbent was then heated with resistance control. After 2 min of heating, the temperature of the adsorbent with isobutane was 13% less than the adsorbent without isobutane. This difference decreased to 2.1% after 9 min of heating, showing desorption of isobutane. An ACFC cartridge was also heated to 175 ℃ for 900 cycles with its resistance and adsorption capacity values remaining within 3% and 2%, respectively. This new method to control regeneration power application based on rapid sensing of the adsorbent's resistance removes the need for direct-contact temperature sensors providing a simple, cost-efficient, and long-term regeneration technique for ESA systems.
机译:用活性碳纤维布(ACFC)对气流中的有机化合物进行电热摆动吸附(ESA)可以减少向大气的排放并回收原料以供再利用。局部温度测量(例如,用热电偶)通常用于监测/控制吸附剂再生循环。在此评估远程电阻测量,以替代本地温度测量。根据其物理特性建模的ACFC电阻在电热加热过程中测得的电阻值不超过10.5%。基于该测量关系开发了电阻控制,并用于将温度控制在再生设定点温度的2.3%以内。然后在电阻控制下加热负载异丁烷的吸附剂。加热2分钟后,带有异丁烷的吸附剂的温度比没有异丁烷的吸附剂的温度低13%。加热9分钟后,该差异降至2.1%,表明异丁烷解吸。将ACFC滤芯也加热到175℃进行900个循环,其电阻和吸附容量值分别保持在3%和2%之内。这种基于快速检测吸附剂电阻的控制再生功率应用的新方法消除了对直接接触温度传感器的需求,直接温度传感器为ESA系统提供了一种简单,经济高效的长期再生技术。

著录项

  • 来源
    《Environmental Science & Technology》 |2012年第20期|p.11305-11312|共8页
  • 作者

    David L. Johnsen; Mark J. Rood;

  • 作者单位

    Department of Civil and Environmental Engineering, University of Illinois, 205 North Mathews Avenue, Urbana, Illinois 61801, United States;

    Department of Civil and Environmental Engineering, University of Illinois, 205 North Mathews Avenue, Urbana, Illinois 61801, United States;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 14:02:51

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