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首页> 外文期刊>Journal of Hazardous Materials >Comparative evaluation of a biotrickling filter and a tubular photobioreactor for the continuous abatement of toluene
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Comparative evaluation of a biotrickling filter and a tubular photobioreactor for the continuous abatement of toluene

机译:生物滴滤池和管式光生物反应器连续减少甲苯的比较评价

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摘要

The negative effects of volatile organic compounds (VOCs) on humans' health and the environment have boosted the enforcement of regulations, resulting in the need of effective and environmentally friendly off-gas treatment technologies. In this work, the synergism between microalgae and bacteria was investigated as a sustainable platform to enhance the biological degradation of toluene, herein selected as a model VOC. An innovative algal-bacterial tubular photobioreactor (TPBR) was systematically compared with a conventional biotrickling filter (BTF). The BTF supported average removal efficiencies close to those obtained in the TPBR (86 +/- 9% and 88 +/- 4%, respectively) at the highest inlet load (similar to 23 g m(3) h(-1)) and lowest gas residence time (0.75 min). However, the BTF was more sensitive towards the accumulation of secondary metabolites. In this regard, photosynthetic O-2 supplementation (resulting in dissolved oxygen concentrations of similar to 7.3 mg O-2 L-1) and CO2 consumption by microalgae (which reduced the impact of acidification) enhanced toluene abatement performance and process stability.
机译:挥发性有机化合物(VOC)对人类健康和环境的负面影响促进了法规的执行,因此需要有效且环保的废气处理技术。在这项工作中,研究了微藻与细菌之间的协同作用,将其作为增强甲苯生物降解能力的可持续平台,在此将其选作VOC模型。系统地比较了创新的藻细菌管状光生物反应器(TPBR)与传统的生物滴滤器(BTF)。 BTF支持的平均去除效率接近TPBR(在最高进口负荷下(分别为23 gm(3)h(-1))和TPBR中获得的平均去除效率(分别为86 +/- 9%和88 +/- 4%)和最低气体停留时间(0.75分钟)。但是,BTF对次级代谢产物的积累更为敏感。在这方面,光合作用O-2的补充(导致溶解氧浓度接近7.3 mg O-2 L-1)和微藻类消耗的CO2(减少了酸化的影响)提高了甲苯的减排性能和工艺稳定性。

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