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首页> 外文期刊>Journal of the Air & Waste Management Association >Toluene vapor capture by activated carbon particles in a dual gas-solid cyclone system
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Toluene vapor capture by activated carbon particles in a dual gas-solid cyclone system

机译:双气固旋风系统中活性炭颗粒捕获的甲苯蒸气

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摘要

Capturing of odorous compounds such as toluene vapor by a particulate-activated carbon adsorbent was investigated in a gas-solid cyclone, which is one type of mobile beds. The test cyclone was early modified with the post cyclone (PoC) and a spiral flow guide to the vortex finder. The proposed process may contribute to the reduction of gases and dust from industrial exhausts, especially when dealing with a low concentration of odorous elements and a large volume of dust flow. In this device, the toluene capturing efficiency at a 400 ppm concentration rose up to 77.4% when using activated carbon (AC) particles with a median size of 2 7.03 μm. A maximum 96% of AC particles could be collected for reuse depending on the size and flow rate. The AC regenerated via thermal treatment showed an adsorption potential up to 66.7% throughout repeated tests. Implications: VOCs and particles have been of interest both in industrial field and public indoor spaces. In this study, a post cyclone (PoC) that utilizes a residual vortex from the mother cyclone was modified by inserting a flow guide and was applied to capture toluene vapor. The device of modified post-cyclone system can be used effectively in simultaneous treatment of gas-solid flow.
机译:在一种气固旋风分离器中研究了用颗粒活化的碳吸附剂捕获诸如甲苯蒸气之类的有气味的化合物,这是一种移动床。用旋风分离器(PoC)和旋涡导向器将旋风分离器早期改造为旋风分离器。所提出的方法可能有助于减少工业废气中的气体和粉尘,特别是在处理低浓度的臭味元素和大量粉尘流时。在此设备中,当使用中值粒径为2 7.03μm的活性炭(AC)颗粒时,浓度为400 ppm时甲苯的捕集效率上升至77.4%。根据大小和流速的不同,最多可以收集96%的AC颗粒用于重复使用。通过热处理再生的交流电在重复测试中显示出高达66.7%的吸附潜力。含义:VOC和颗粒物已在工业领域和公共室内空间中引起关注。在这项研究中,利用插入旋流器对利用旋风分离器中残留旋涡的旋风分离器(PoC)进行了改造,并用于捕集甲苯蒸气。改进后的旋风分离器系统可以有效地用于气固两流同时处理。

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  • 来源
    《Journal of the Air & Waste Management Association 》 |2012年第8期| p.924-931| 共8页
  • 作者单位

    Department of Environmental Science and Engineering, Center for Environmental Studies, Kyung Hee University, Kyunggi-do, Yongin, Korea;

    Department of Environmental Science and Engineering, Center for Environmental Studies, Kyung Hee University, Kyunggi-do, Yongin, Korea;

    Department of Environmental Engineering, Kawangwon National University, Kangwon-do, Samcheock, Korea;

    Department of Environmental Science and Engineering, Center for Environmental Studies, Kyung Hee University, Kyunggi-do, Yongin, Korea,Department of Environmental Science and Engineering, Kyung Hee University, Kyunggi-do, Yongin, 449-701, Korea;

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