Heterogeneous Catalytic Ozonation of Phenol over Iron-based Catalysts in a Trickle Bed Reactor

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY
Ingenieria Pub Date : 2020-04-16 DOI:10.15517/ri.v30i2.39236
Luis Briceño Mena, Esteban Durán Herrera
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引用次数: 0

Abstract

The use of continuous reactors for heterogeneous catalytic ozonation is yet to be investigated in order to develop a viable technology for industrial applications. This paper presents hydrodynamic and degradation studies on the use of a co-current down flow trickle bed reactor for heterogeneous catalytic ozonation of phenol (as model pollutant) over Fe-Diatomite pellets and Fe-coated glass beads. It was found that the reactor can operate under trickle or pulsing flow regimes, promoting mass transfer augmentation. Residence time distribution data, fitted with n-CSTR and axial dispersion (ADM) models, showed low axial dispersion and high flow distribution. Just the Fe-diatomite pellets showed important phenol adsorption (16 %). Degradation experiments demonstrated that phenol conversion was substantial when using both catalysts, up to 19,7 % pollutant conversion with liquid-phase space times of just 6 s. Compared to direct ozonation, the use of the Fe-diatomite pellets and Fe-coated glass beads enhanced the reactor performance by 48 % and 23 %, respectively. It was confirmed that mass transfer is an important factor that restricts this reaction system performance; consequently, further improvement in mass transport rate is necessary for system optimization.
滴流床反应器中铁基催化剂上苯酚的非均相催化臭氧化
使用连续反应器进行多相催化臭氧化还有待研究,以便开发一种可行的工业应用技术。本文介绍了用共流下流式滴床反应器在含铁硅藻土颗粒和含铁玻璃微珠上催化臭氧氧化苯酚(作为模型污染物)的流体动力学和降解研究。研究发现,反应器可以在细流或脉动流状态下运行,促进传质增强。采用n-CSTR和轴向弥散(ADM)模型拟合的停留时间分布数据显示,轴向弥散较低,流动分布较大。只有铁硅藻土颗粒对苯酚有重要的吸附作用(16%)。降解实验表明,当使用这两种催化剂时,苯酚转化率很高,在液相空间时间仅为6 s的情况下,污染物转化率高达19.7%。与直接臭氧化相比,使用铁硅藻土颗粒和涂铁玻璃珠分别使反应器性能提高48%和23%。证实传质是制约该反应体系性能的重要因素;因此,进一步提高质量输运率是系统优化的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ingenieria
Ingenieria ENGINEERING, MULTIDISCIPLINARY-
CiteScore
0.70
自引率
25.00%
发文量
33
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