Bajaj M, Gallert C, Winter J
Institute of Biology for Engineers and Biotechnology of Wastewater Treatment, University of Karlsruhe, Am Fasanengarten, 76131 Karlsruhe, Germany.
Bioresour Technol. 2008 Nov;99(17):8376-81. doi: 10.1016/j.biortech.2008.02.057. Epub 2008 Apr 28.
The continuous aerobic degradation of phenol, mixed with readily degradable synthetic wastewater was studied over a period of 400 days at 25+/-5 degrees C temperature in a fixed bed biofilm reactor using 'Liapor' clay beads as packing material. The phenol concentration added to the reactor ranged from 0.19 to 5.17g/l and was achieved by a gradual increase of phenol in wastewater, thus adapting the microbial flora to high contaminant concentrations. A maximal removal rate of 2.92g phenol/(ld) at a hydraulic retention time (HRT) of 0.95 days and a total organic loading rate (OLR) of 15.3g COD/(ld) with a phenol concentration of 4.9g/l was observed. However, this was not a stable rate at such high phenol loading. At the end of reactor operation on day 405, the phenol removal rate was 2.3g/(ld) at a influent phenol concentration of 4.9g/l. There were no phenol intermediates present in the reactor, as evident from corresponding COD, phenol removal and the absence of fatty acids. Omission of organic nitrogen compounds or of urea in influent feed was not favourable for optimal phenol removal. The phenol degradation profile that was studied in shake flasks indicated that the presence of a acetate which represent as an intermediate of phenol degradation retarded the phenol degradation. The highest phenol degradation rate observed in batch assays was 3.54g/(ld).
在25±5摄氏度的温度下,于固定床生物膜反应器中,使用“Liapor”粘土珠作为填充材料,对与易降解合成废水混合的苯酚进行了为期400天的连续好氧降解研究。添加到反应器中的苯酚浓度范围为0.19至5.17克/升,通过逐渐增加废水中的苯酚来实现,从而使微生物菌群适应高污染物浓度。在水力停留时间(HRT)为0.95天、总有机负荷率(OLR)为15.3克化学需氧量/(升·天)且苯酚浓度为4.9克/升的条件下,观察到最大去除率为2.92克苯酚/(升·天)。然而,在如此高的苯酚负荷下,这并非一个稳定的速率。在第405天反应器运行结束时,进水苯酚浓度为4.9克/升时,苯酚去除率为2.3克/(升·天)。从相应的化学需氧量、苯酚去除情况以及脂肪酸的不存在可以明显看出,反应器中不存在苯酚中间体。进水饲料中省略有机氮化合物或尿素不利于最佳苯酚去除。在摇瓶中研究的苯酚降解曲线表明,作为苯酚降解中间体的乙酸盐的存在会阻碍苯酚降解。在分批试验中观察到的最高苯酚降解率为3.54克/(升·天)。