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Removal of hydrogen sulfide by permanganate based sorbents: Experimental investigation and reactor modeling

机译:高锰酸盐基吸附剂去除硫化氢的实验研究和反应器建模

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The removal of hydrogen sulfide from ambient air can be accomplished by porous adsorbents, which are impregnated with potassium permanganate. In this study such adsorbents were prepared by granulation on a pelletizing disk and characterized in breakthrough measurements with hydrogen sulfide. In these experiments different reaction times, pellet sizes, inlet concentrations and residence times were analyzed. To investigate the reaction process inside the pellet, microscopic analyses and REM/EDX element scans of reacted particles after different reaction times were performed. These results indicate that the reaction mainly proceeds at a rather sharp reaction front. As a first approach the shrinking core model was applied for the description of the breakthrough curves, showing already a good agreement with the experimental results. Additionally a volume reaction model was developed, which considers two consecutive reactions occurring in the whole particle volume. In contrast to the shrinking core model, the volume reaction model allows for describing the decrease of the measured position of the reaction zone in good agreement with the optical and elemental analyses of the reacted adsorbent pellets. (C) 2016 Elsevier Ltd. All rights reserved.
机译:可以通过用高锰酸钾浸渍的多孔吸附剂从环境空气中去除硫化氢。在这项研究中,此类吸附剂是通过在造粒盘上制粒制备的,并通过硫化氢的突破性测量进行了表征。在这些实验中,分析了不同的反应时间,颗粒大小,入口浓度和停留时间。为了研究颗粒内部的反应过程,在不同的反应时间后,对反应颗粒进行了微观分析和REM / EDX元素扫描。这些结果表明反应主要在相当尖锐的反应前沿进行。作为第一种方法,收缩中心模型用于描述突破曲线,已经表明与实验结果很好地吻合。另外,建立了体积反应模型,该模型考虑了在整个颗粒体积中发生的两个连续反应。与收缩芯模型相反,体积反应模型允许描述反应区的测量位置的减少,这与反应的吸附剂粒料的光学和元素分析非常吻合。 (C)2016 Elsevier Ltd.保留所有权利。

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