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Application of an airlift reactor with a net draft tube in phenol bio-oxidation using Ralstonia eutropha

机译:空运反应器与苯酚生物氧化净射流使用Ralstonia Eutropha的应用

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Phenol biodegradation by Ralstonia eutropha was studied in a constructed airlift reactor with a stainless steel net draft tube (ALR-NDT). In giving a description of the cell performance, it is necessary to quantify the relationships between the bioreactor characteristics (gas holdup (epsilon(G)), time of mixing (t(m)), and gas-liquid mass transfer coefficient (K(L)a)) and the cell bioprocesses. Thus, the hydrodynamic properties of the reactor were measured using air-water and air-mineral salt solution (MSS) systems. The K(L)a value for the MSS system in ALR-NDT was 1.2 times higher than the bubble column reactor and airlift reactor as modified versions of the ALR-NDT. Improvement in t(m) was also considerable for air-MSS in the ALR-NDT. At higher superficial gas velocities (U(G)s), ALR-NDT performance was better in terms of epsilon(G) obtained for air-MSS compared with an air-water system. Growth and phenol consumption by R. eutropha followed substrate inhibition kinetics, and the experimental data for the specific growth rates at three different U(G)s were fitted to the Haldane, Edwards and Aiba-Edwards models. Between these models, the latter gave the best fit according to the goodness of fit results. The estimated kinetic parameters were indicative of a high potential for R. eutropha in degrading phenol.
机译:在具有不锈钢网牵引管(ALR-NDT)的构建的空运反应器中研究了Ralstonia Eutropha的苯酚生物降解。在给出细胞性能的描述时,必须量化生物反应器特性(气体堆积(epsilon(g)),混合时间(t(m))和气液传质系数(k( l)a))和细胞生物处理。因此,使用空气水和空气矿物盐溶液(MSS)系统测量反应器的流体动力学性质。 K(l)ALR-NDT的MSS系统的值比泡沫柱反应器和空运反应器高1.2倍,因为ALR-NDT的改性版本。在ALR-NDT中,T(M)的改善也适用于AIR-MSS。在较高的表面气体速度(U(g)S)中,与空气水系统相比,AL-NDT性能更好地,对于空气系统而获得的ε(g)。 R. eutropha的生长和苯酚消耗洗脱底物抑制动力学,以及三种不同U(g)S的特异性生长速率的实验数据适用于卤代,爱德华兹和AIBA-Edwards模型。在这些模型之间,后者根据拟合结果的良好获得最佳拟合。估计的动力学参数指示降解苯酚中R. eutropha的高潜力。

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