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Airflow versus pressure drop for a mixture of bulk wood chips and bark at different moisture contents

机译:不同水分含量的散装木屑和树皮混合物的气流与压降

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Moist irregular wood chips or wood bark are used in packed beds for reducing odour and other gaseous emissions from waste gases. Moisture control of packing materials is essential for effective waste gas treatment. Therefore, simple experiments have been carried out to determine the influence of moisture content in a biofiltration bed made up of a mixture of irregular wood chips and wood bark in proportion 50:50 by mass on the pressure drop of air flowing through that bed. Nine moisture content levels varying from 8.1% to 64.5% (w.b.) were tested. The limiting empty bed residence time (EBRT) has been determined for each level. The influence of moisture content on true density, porosity and specific surface of the bed was determined. Above the moisture content of 28.3% (w.b.) there was a drastic change in the physical parameters of the biofilter packing. For moisture contents = 28.3% (w.b.) the pressure drop increased slightly, while at values greater than 28.3% (w.b.) the opposite trend was observed. The Ergun equation was used to describe the relationship between the pressure drop through the bed and the superficial air velocity. For moisture contents = 28.3% (w.b.) an approximate Ergun-type equation was proposed to describe pressure drop through the bed and the superficial air velocity. (C) 2015 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:填充床使用潮湿的不规则木屑或木皮,以减少废气中的气味和其他气体排放。包装材料的水分控制对于有效的废气处理至关重要。因此,已经进行了简单的实验来确定由质量比为50:50的不规则木屑和木树皮的混合物组成的生物过滤床中的水分含量对流经该床的空气的压降的影响。测试了9种水分含量,含量从8.1%到64.5%(w.b.)不等。已确定每个级别的极限空床停留时间(EBRT)。确定了水分含量对床的真实密度,孔隙率和比表面积的影响。水分含量高于28.3%(w.b.)时,生物滤池填料的物理参数发生了巨大变化。对于水分含量≤28.3%(w.b。),压降略有增加,而当值大于28.3%(w.b。)时,观察到相反的趋势。 Ergun方程用于描述穿过床的压降与表面空气速度之间的关系。对于水分含量≤28.3%(w.b.),提出了近似的Ergun型方程来描述通过床层的压降和表观空气速度。 (C)2015年。由Elsevier Ltd.出版。保留所有权利。

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