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首页> 外文期刊>Journal of the air & waste management association >A hybrid biological process of indoor air treatment for toluene removal
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A hybrid biological process of indoor air treatment for toluene removal

机译:室内空气去除甲苯的混合生物过程

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摘要

Bioprocesses, such as biofiltration, are commonly used to treat industrial effluents containing volatile organic compounds (VOCs) at low concentrations. Nevertheless, the use of biofiltration for indoor air pollution (LAP) treatment requires adjustments depending on specific indoor environments. Therefore, this study focuses on the convenience of a hybrid biological process for IAP treatment. A biofiltration reactor using a green waste compost was combined with an adsorption column filled with activated carbon (AC). This system treated a toluene-micropolluted effluent (concentration between 17 and 52 μg/m~3), exhibiting concentration peaks close to 733 μg/m~3 for a few hours per day. High removal efficiency was obtained despite changes in toluene inlet load (from 4.2 × 10~(-3) to 0.20 g/m~3/hr), which proves the hybrid system's effectiveness. In fact, during unexpected concentration changes, the efficiency of the biofilter is greatly decreased, but the adsorption column maintains the high efficiency of the entire process (removal efficiency [RE] close to 100%). Moreover, the adsorption column after biofiltration is able to deal with the problem of the emission of particles and/or microorganisms from the biofilter.Implications: Indoor air pollution is nowadays recognized as a major environmental and health issue. This original study investigates the performance of a hybrid biological process combining a biofilter and an adsorption column for removal of indoor VOCs, specifically toluene.
机译:生物过程(例如生物过滤)通常用于处理含有低浓度挥发性有机化合物(VOC)的工业废水。但是,将生物滤池用于室内空气污染(LAP)处理需要根据特定的室内环境进行调整。因此,本研究侧重于IAP治疗的混合生物学过程的便利性。将使用绿色废料堆肥的生物过滤反应器与装有活性炭(AC)的吸附柱合并。该系统处理了甲苯微污染的废水(浓度在17至52μg/ m〜3之间),每天出现数小时的浓度峰值接近733μg/ m〜3。尽管甲苯进口负荷发生了变化(从4.2×10〜(-3)变为0.20 g / m〜3 / hr),仍获得了较高的去除效率,这证明了混合系统的有效性。实际上,在浓度意外变化期间,生物过滤器的效率会大大降低,但吸附柱仍可保持整个过程的高效率(去除效率[RE]接近100%)。此外,生物过滤后的吸附柱能够处理生物过滤器中的颗粒和/或微生物排放的问题。启示:如今,室内空气污染已被视为主要的环境和健康问题。这项原始研究调查了混合生物工艺的性能,该工艺结合了生物滤池和吸附柱,可去除室内VOC,特别是甲苯。

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  • 来源
    《Journal of the air & waste management association 》 |2014年第12期| 1403-1409| 共7页
  • 作者单位

    Equipe Traitement des effluents gazeux, Laboratoire de Thermique, Energetique et Procedes, LaTEP, Universite de Pau et des Pays de l'Adour, Tarbes, France,Laboratoire de Thermique, Energetique et Procedes (LaTEP - EA 1932, UPPA), Ecole Nationale Superieure en Genie des Technologies Industrielles, Rue Jules Ferry BP 7511, 64 075 PAU Cedex, France;

    Equipe Traitement des effluents gazeux, Laboratoire de Thermique, Energetique et Procedes, LaTEP, Universite de Pau et des Pays de l'Adour, Tarbes, France;

    Equipe Traitement des effluents gazeux, Laboratoire de Thermique, Energetique et Procedes, LaTEP, Universite de Pau et des Pays de l'Adour, Tarbes, France;

    Equipe Traitement des effluents gazeux, Laboratoire de Thermique, Energetique et Procedes, LaTEP, Universite de Pau et des Pays de l'Adour, Tarbes, France,Department of Chemical and Environmental Engineering, University of the Basque Country, Bilbao, Spain;

    LOCIE, Universite de Savoie, Polytech, Campus scientifique, Savoie Technolac, Le Bourget du Lac, France;

    Equipe Traitement des effluents gazeux, Laboratoire de Thermique, Energetique et Procedes, LaTEP, Universite de Pau et des Pays de l'Adour, Tarbes, France;

    Department of Chemical and Environmental Engineering, University of the Basque Country, Bilbao, Spain;

    Department of Chemical and Environmental Engineering, University of the Basque Country, Bilbao, Spain;

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