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Influence of hydrodynamic conditions on biofilm behavior in a methanogenic inverse turbulent bed reactor

机译:流体动力学条件对甲烷生成逆湍床反应器中生物膜行为的影响

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摘要

This paper presents a study about the influence of gas velocity on a methanogenic biofilm in an inverse turbulent bed reactor. Experimental results indicate a dynamic response of the growing attached biomass to the changes of hydrodynamic conditions, mainly attrition constraints. Short but intensive increases of gas velocity (U-g) are shown to induce more detachment than a high but constant gas flow rate. Hydrodynamic conditions control the composition of the growing biofilm in terms of cells and exocellular polymeric substances (EPS). The cell fraction within the biofilm (R-cell) was found to be inversely proportional to the gas velocity. The specific activity expressed in methane production rate or COD removal rate is higher in biofilms formed under high hydrodynamic constraints. The control of the hydrodynamic conditions in a biofilm reactor should make it possible to obtain a resistant and active biofilm.
机译:本文提出了关于逆湍流床反应器中气体速度对产甲烷生物膜影响的研究。实验结果表明,生长的附着生物量对流体动力学条件(主要是磨损限制)的变化具有动态响应。与高而恒定的气体流速相比,短暂但强烈的气体流速(U-g)增加显示出更多的脱离。流体力学条件根据细胞和胞外聚合物(EPS)来控制生长中的生物膜的组成。发现生物膜(R细胞)中的细胞分数与气体速度成反比。在高水动力约束下形成的生物膜中,以甲烷产生速率或COD去除速率表示的比活较高。在生物膜反应器中对流体力学条件的控制应使得有可能获得抗性和活性的生物膜。

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