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Efficiency Analysis of Sequential Biotrickling- Biofiltration Treatment Systems for Emissions Control for Two Types of Petrochemical VOC Applications

机译:两种石化VOC应用排放控制序贯生物透明 - 生物滤光处理系统的效率分析

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The aim of this study was to compare the performance of a pilot and field-scale sequential biotrickling-biofiltration unit to remove hazardous air pollutants from two different oil and gas industry emissions. GC-MS characterization data indicated higher concentration of the aromatic compounds such as benzene and xylene in the wastewater sump at CITGO, Corpus Christi compared to the headspace of the storage tanks at Apache TAMU#2 tank battery, Snook. On the other hand, the concentration of the less water soluble compounds such as alkanes and alkenes were higher in the field test compared to the pilot test.The low concentration of the more biodegradable compounds such as benzene at the inlet of the full-scale unit at the upstream production site compared to the inlet of the pilot-scale system at the downstream refinery process unit led to the low concentration of the carbon and energy source for the microorganisms, low biomass growth and consequently lower destruction of the VOCs in the full-scale unit compared to the pilot scale unit. From an engineering perspective, comparison of the pilot and full-scale plant results indicates that the pilot study of the BTF-BF performance could be a timesaving tool for obtaining valuable data for the scale-up.
机译:本研究的目的是比较试验和现场级顺序生物rickling-Biofiltration-Biofiltration-Biofiltration-Biofiltration单元的性能,从两个不同的石油和天然气行业排放中去除有害空气污染物。 GC-MS表征数据表明,与Apache Tamu#2罐电池的储罐的顶部空间相比,Corpus Christi在花旗池中的芳香族和二甲苯如苯和二甲苯的浓度更高。另一方面,与试验试验相比,现场试验中诸如烷烃和烯烃如烷烃和烯烃的浓度较高。在满量程单元的入口处的苯等苯如苯的低浓度在上游生产现场与下游炼油厂过程中的试验尺度系统的入口相比,导致微生物的碳和能源的低浓度,生物量增长低,因此较低的损坏与试点秤单位相比的比例单位。从工程角度来看,飞行员和全尺度植物结果的比较表明,BTF-BF性能的试验研究可能是用于获得扩展的有价值的数据的令人惊叹的工具。

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