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用于高效降解苯酚的新型气液两相流膜生物反应器。

Novel membrane bioreactor with gas/liquid two-phase flow for high-performance degradation of phenol.

作者信息

Léonard D, Mercier-Bonin M, Lindley N D, Lafforgue C

机构信息

Laboratoire de Biotechnologie et Bioprocédés, UMR INSA CNRS 5504, Lab Ass INRA, Centre de Bioingénierie Gilbert Durand, Institut National des Sciences Appliquées, Complexe Scientifique de Rangueil, 31077 Toulouse Cedex 4, France.

出版信息

Biotechnol Prog. 1998 Sep-Oct;14(5):680-8. doi: 10.1021/bp980069z.

Abstract

The use of a membrane bioreactor with cell retention to achieve high biomass concentrations has been examined for phenol degradation by the bacteria Alcaligenes eutrophus. This process is particularly interesting for toxic substrates as the hydraulic dilution rate and the growth rate are independently controlled. In the case of a transitory excess of phenol, this potentially toxic situation can be overcome by modifying the substrate concentration or the dilution rate without any loss of cells. The injection of a gas phase at the filter inlet increased both the permeate flow rate (by a factor of 1. 75) and the oxygen transfer capacity (by a factor of 1.5). This has enabled the cell concentration to reach a maximal value of 60 g L-1 with a hydraulic dilution rate of 0.5 h-1 and a phenol feed concentration of 8 g L-1. The volumetric productivity of this process corresponds to a phenol degradation rate approaching 100 kg m-3 day-1. The on-line measurement of the characteristic yellow color of 2-hydroxymuconate semialdehyde, a metabolic intermediate of the phenol degradation pathway, in the permeate provides an interesting basis for process control of phenol supply into the reactor since the color intensity correlates directly to the specific rate of phenol degradation.

摘要

使用带有细胞截留功能的膜生物反应器以实现高生物量浓度,已被用于研究嗜碱产碱杆菌对苯酚的降解。对于有毒底物而言,该过程尤为有趣,因为水力稀释率和生长速率是独立控制的。在苯酚暂时过量的情况下,可以通过改变底物浓度或稀释率来克服这种潜在的毒性状况,而不会损失任何细胞。在过滤器入口处注入气相,可使渗透液流速提高1.75倍,氧气传递能力提高1.5倍。这使得细胞浓度在水力稀释率为0.5 h-1且苯酚进料浓度为8 g L-1的情况下达到最大值60 g L-1。该过程的体积生产率对应于苯酚降解速率接近100 kg m-3天-1。渗透液中2-羟基粘康酸半醛(苯酚降解途径的一种代谢中间体)特有的黄色的在线测量,为控制向反应器供应苯酚提供了一个有趣的数据基础,因为颜色强度与苯酚降解的比速率直接相关。

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