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Feasibility study of a compact process for biological treatment of highlysoluble VOCs polluted gaseous effluent

机译:生物处理高溶解性挥发性有机化合物污染气态废水的紧凑工艺的可行性研究

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Volatile organic compounds (VOCs), representing a wide range of products mainly generated by industrial activity, are involved in air pollution. This study deals with a new biological treatment process of gaseous effluent combining a gas/liquid contactor called an "aero-ejector" and a membrane bioreactor. Combining these two innovative technologies enables a high elimination efficiency to be reached. We first focus on transfer phenomena characterization in a pilot installation on a laboratory scale, using a gaseous effluent polluted with a low ethanol concentration (7.1 x 10(-3) kg.m(-3)). These experiments demonstrated the good transfer performances since 90% of the ethanol was absorbed in the liquid phase in one step. After this physical characterization, the biological aspect of the system was studied using the yeast Candida utilis as microorganism. During the experiment, no ethanol was measured in the fermentation broth nor in the outlet gas, confirming the efficiency of ethanol elimination by C. utilis. The experimental procedure emerging from the present study strongly validates the suitability of this process for ethanol removal from air.
机译:挥发性有机化合物(VOC)代表着主要由工业活动产生的多种产品,它们与空气污染有关。这项研究涉及一种新型的气态废水生物处理工艺,该工艺将一种称为“航空喷射器”的气/液接触器与一个膜生物反应器相结合。结合这两种创新技术,可以达到很高的消除效率。我们首先关注在实验室规模的试验装置中,使用低乙醇浓度(7.1 x 10(-3)kg.m(-3))污染的气态流出物对转移现象进行表征。这些实验证明了良好的转移性能,因为90%的乙醇被一步吸收了。在此物理表征之后,使用酵母菌假丝酵母(Candida utilis)作为微生物研究了系统的生物学方面。在实验过程中,在发酵液中或出口气体中均未检测到乙醇,这证实了利用乌头梭菌去除乙醇的效率。从本研究中得出的实验程序有力地验证了该方法对于从空气中去除乙醇的适用性。

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