Aldric Jean-Marc, Lecomte Jean-Paul, Thonart Philippe
Centre Wallon de Biologie Industrielle, Unité de Bio-industries, Faculté Universitaire des Sciences Agronomiques de Gembloux, Passage des déportés, 2, 5030 Gembloux, Belgium.
Appl Biochem Biotechnol. 2009 May;153(1-3):67-79. doi: 10.1007/s12010-008-8480-0. Epub 2009 Jan 21.
A two-phase partitioning bioreactor to treat gas effluents polluted by volatile organic compound has been developed. In this work, both the mass transfer of isopropylbenzene (IPB) and oxygen have been considered in relation to their influence on the hydrodynamics of the reactor and the type of silicone oils used as a second phase. The synergistic effect of silicone oil and stirrer speed on the global oxygen mass transfer coefficient (KLa) and gas holdup (up to 12%) have been investigated. The addition of 10% of low viscosity silicone oil (10 cSt) in the reactor does not significantly affect the oxygen transfer rate. The very high solubility of IPB in the silicone oil leads to an enhancement of driving force term, especially for high fraction of silicone oil. However, it does not seem useful to exceed a volume fraction of 10% since KLa(IPB) decreases sharply at higher proportions of silicone oil. KLa(IPB) and KLaO2 evolve in the same way with the proportion of silicone oil. These results confirm the potentialities of our bioreactor to improve both the oxygen and pollutant gas transfer in the field of the treatment of gaseous pollutants, even for highly concentrated effluents.
一种用于处理受挥发性有机化合物污染的气体流出物的两相分配生物反应器已被开发出来。在这项工作中,考虑了异丙苯(IPB)和氧气的传质与其对反应器流体动力学的影响以及用作第二相的硅油类型之间的关系。研究了硅油和搅拌速度对总体氧气传质系数(KLa)和气体滞留率(高达12%)的协同作用。在反应器中添加10%的低粘度硅油(10厘沲)不会显著影响氧气传递速率。IPB在硅油中的极高溶解度导致驱动力项增加,特别是对于高比例的硅油。然而,超过1体积分数10%似乎没有用处,因为在更高比例的硅油下KLa(IPB)会急剧下降。KLa(IPB)和KLaO2随硅油比例以相同方式变化。这些结果证实了我们的生物反应器在气态污染物处理领域改善氧气和污染物气体传递的潜力,即使对于高浓度流出物也是如此。