Development of a CFD model indicating the quantitative relationship among reactor dimension, bed flow unevenness, and performance for VOCs biofilters.

IF 2.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Ziyu Liu, Dong Dong, Jinying Xi
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引用次数: 0

Abstract

This study presents a Computational Fluid Dynamics (CFD) based biofiltration model to investigate the airflow distribution and the impact of bed flow unevenness (BFU) on the removal of Volatile Organic Compounds (VOCs) in biofilters. The biofiltration model consists of a gas flow sub-model and a VOCs removal sub-model, which were validated by pilot-scale experiments. The model was used to examine the quantitative relationship among reactor dimensions, including the width to height ratio of the filter bed and empty bed residence time (EBRT), BFU, and performance for VOCs biofilters. Simulation results demonstrate that the flow unevenness index (FUI) of the packing layer changes from 0.06 to 0.48 m2‧s-1 with reactor dimension changes. With an increase in the width to height ratio at a constant EBRT, FUI increases, BFU changes, and flow velocity fluctuation on the cross-section becomes larger, leading to a reduction of about 10% in VOCs removal efficiency. Concentration distribution of VOCs becomes uneven in the horizontal direction. At a constant width to height ratio of the filter bed, an increase in EBRT causes an increase in FUI, leading to a decrease in VOCs removal efficiency. When the width to height ratio is 0.5, velocity fluctuation of filter bed cross-section is small, the concentration of VOCs decreases evenly across the filter bed layer, and FUI is at a low level (0.06-0.11 m2‧s-1).Implication: In this manuscript, a biofiltration model of VOCs biofilter based on CFD has constructed and validated. And the manuscript gave the quantitative relationship among reactor dimension, bed flow unevenness and performance for VOCs biofilters for the first time. This study can lead to enhanced VOCs removal efficiency and improved overall performance of biofilters in practical engineering applications.

CFD模型的开发表明了反应器尺寸、床流不均匀性和VOCs生物过滤器性能之间的定量关系。
本研究提出了一个基于计算流体动力学(CFD)的生物过滤模型,以研究气流分布以及床层流动不均匀性(BFU)对生物滤池中挥发性有机化合物(VOCs)去除的影响。生物过滤模型由气流子模型和VOCs去除子模型组成,并通过中试实验进行了验证。该模型用于检验反应器尺寸之间的定量关系,包括滤床的宽高比和空床停留时间(EBRT)、BFU以及VOCs生物过滤器的性能。模拟结果表明,填料层的流动不均匀指数(FUI)从0.06变化到0.48 m2·s-1随反应器尺寸变化。在恒定的EBRT下,随着宽高比的增加,FUI增加,BFU改变,横截面上的流速波动变大,导致VOCs去除效率降低约10%。VOCs的浓度分布在水平方向上变得不均匀。在滤床的宽高比不变的情况下,EBRT的增加会导致FUI的增加,从而导致VOCs去除效率的降低。当宽高比为0.5时,滤床截面的速度波动较小,VOCs浓度在整个滤床层均匀下降,FUI处于较低水平(0.06 ~ 0.11 m2·s-1)。含义:本文构建并验证了基于CFD的VOCs生物滤池生物过滤模型。首次给出了VOCs生物滤池反应器尺寸、床层流动不均匀性与性能之间的定量关系。这项研究可以提高VOCs的去除效率,并在实际工程应用中提高生物过滤器的整体性能。
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
Journal of the Air & Waste Management Association
Journal of the Air & Waste Management Association ENGINEERING, ENVIRONMENTAL-ENVIRONMENTAL SCIENCES
CiteScore
5.00
自引率
3.70%
发文量
95
审稿时长
3 months
期刊介绍: The Journal of the Air & Waste Management Association (J&AWMA) is one of the oldest continuously published, peer-reviewed, technical environmental journals in the world. First published in 1951 under the name Air Repair, J&AWMA is intended to serve those occupationally involved in air pollution control and waste management through the publication of timely and reliable information.
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