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Use of biofilters and suspended-growth reactors to treat VOCs

机译:使用生物过滤器和悬浮生长反应器处理挥发性有机化合物

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摘要

The greater limits placed on volatile organic compound (VOC) emissions by the Clean Air Act Amendments have stimulated evaluation of various VOC treatment methods. Two applicable gas phase treatment technologies are biofiltration and suspended growth reactors. Biofiltration removes contaminants from gas streams that are passed through a bed of biologically active solids. An aerobic suspended-growth reactor (SGR) removes VOCs by biologically treating contaminated air bubbled through an aqueous suspension of active microorganisms. This research compared the performance of a typical compost biofilter to a SGR for the removal of a common VOC (toluene) from gas streams. The objective was to evaluate the impact of mass loading on process per- formance. Major performance parameters investigated were (1) mass emitted and elimination capacity, (2) off-gas concentrations exiting each type of reactor for various mass loadings, and (3) removal efficiencies obtained by each type of reactor. The results indicated that SGRs can effectively treat gases containing VOCs. For mass loadings ranging from 5 to 30 mg/l-h, the biofilters and SGRs achieved similar VOC removals, in the range of 96-99.7/100 . Drying of the biofilter medium occurred at high mass loadings. In the SGRs, at mass loadings greater than 17 mg/l-h, process performance decreased when an unknown colored substance was present.
机译:《清洁空气法修正案》对挥发性有机化合物(VOC)排放的更大限制刺激了对各种VOC处理方法的评估。两种适用的气相处理技术是生物过滤和悬浮生长反应器。生物过滤从流过生物活性固体床的气流中去除污染物。好氧悬浮生长反应器(SGR)通过对经过活性微生物水悬浮液鼓泡的受污染空气进行生物处理来去除VOC。这项研究将典型的堆肥生物滤池与SGR的性能进行了比较,以从气流中去除常见的VOC(甲苯)。目的是评估质量负载对过程性能的影响。研究的主要性能参数是:(1)排放的质量和消除能力;(2)各种质量负载下每种反应器的废气浓度;(3)每种反应器获得的去除效率。结果表明,SGRs可以有效处理含VOC的气体。对于5至30 mg / l-h的质量负载,生物滤池和SGR可以实现相似的VOC去除,范围为96-99.7 / 100。生物过滤器介质的干燥发生在大量负载下。在SGR中,当质量负载大于17 mg / l-h时,当存在未知的有色物质时,过程性能会下降。

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