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Effect of gas empty bed contact time on performances of various types of rotating drum biofilters for removal of VOCs

机译:气空床接触时间对各种类型旋转鼓式生物滤池去除VOC的性能的影响

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The effects of gas empty bed contact time (EBCT), biofilter configuration, and types of volatile organic compounds (VOCs) were evaluated to assess the performance of rotating drum biofilters (RDBs), especially at low EBCT values. Three types of pilot-scale RDBs, a single-layer RDB, a multi-layer RDB, and a hybrid RDB, were examined at various gas EBCTs but at a constant VOC loading rate. Diethyl ether, toluene, and hexane were used separately as model VOC. When EBCT increased from 5.0 to 60 s at a constant VOC loading rate of 2.0 kg COD/(m~3 day), ether removal efficiency increased from 73.1% to 97.6%, from 81.6% to 99.9%, and from 84.0% to 99.9% for the single-layer RDB, the multi-layer RDB, and the hybrid RDB, respectively, and toluene removal efficiency increased from 76.4% to 99.9% and from 84.8% to 99.9% for the multi-layer RDB and the hybrid RDB, respectively. When hexane was used as the model VOC at a constant loading rate of 0.25 kg COD/ (m~3 day), hexane removal efficiency increased from 31.1% to 57.0% and from 29.5% to 50.0% for the multi-layer RDB and hybrid RDB, respectively. The single-layer, multi-layer, and hybrid RDBs exhibited, respectively, the lowest, middle, and highest removal efficiencies, when operated under similar operational loading conditions. Hexane exhibited the lowest removal efficiency, while diethyl ether displayed the highest removal efficiency. The data collected at the various EBCT values correlated reasonably well with a saturation model. The sensitivity of removal efficiency to EBCT varied significantly with EBCT values, VOC properties, and biofilter configurations. Process selection and design for RDB processes should consider these factors.
机译:评估了气体空床接触时间(EBCT),生物滤池配置和挥发性有机化合物(VOC)类型的影响,以评估转鼓式生物滤池(RDB)的性能,尤其是在低EBCT值时。在各种气体EBCT上以恒定的VOC加载速率检查了三种类型的中试规模RDB,即单层RDB,多层RDB和混合RDB。乙醚,甲苯和己烷分别用作VOC模型。当以2.0 kg COD /(m〜3天)的恒定VOC加载速率将EBCT从5.0 s增加到60 s时,除醚效率从73.1%增至97.6%,从81.6%增至99.9%,从84.0%增至99.9单层RDB,多层RDB和混合RDB的百分比分别为5%,而多层RDB和混合RDB的甲苯去除效率则从76.4%提高到99.9%,从84.8%提高到99.9%,分别。当以0.25 kg COD /(m〜3天)的恒定负载率将己烷用作模型VOC时,多层RDB和混合溶剂的己烷去除效率从31.1%提高到57.0%,从29.5%提高到50.0% RDB分别。当在类似的运行负载条件下运行时,单层,多层和混合RDB分别显示出最低,中级和最高去除效率。己烷显示出最低的去除效率,而乙醚显示出最高的去除效率。在各种EBCT值下收集的数据与饱和度模型相关性相当好。去除效率对EBCT的敏感性随EBCT值,VOC特性和生物滤池配置的不同而有很大差异。 RDB流程的流程选择和设计应考虑这些因素。

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