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上流式厌氧污泥床(UASB)反应器中直链烷基苯磺酸盐(LAS)的厌氧生物降解

Anaerobic biodegradation of linear alkylbenzene sulfonate (LAS) in upflow anaerobic sludge blanket (UASB) reactors.

作者信息

Sanz José L, Culubret Elayne, de Ferrer Juan, Moreno Alfonso, Berna José L

机构信息

Unit of Applied Microbiology, Centre of Molecular Biology, Autónoma University of Madrid, 28049 Madrid, Spain.

出版信息

Biodegradation. 2003;14(1):57-64. doi: 10.1023/a:1023557915653.

Abstract

The anaerobic biodegradation of Linear Alkylbenzene Sulfonate (LAS) was studied in Upflow Anaerobic Sludge Blanket Reactors (UASB). One reactor was fed with easily degradable substrates and commercial LAS solution during a period of 3 months (Reactor 1), meanwhile a second reactor was fed with a commercial LAS solution without co-substrate (Reactor 2) during 4 months. Both reactors were operated with an organic loading rate of 4-5 mg-LAS/l x day and a hydraulic retention time of one day. The LAS biodegradation was determined by full mass balance. LAS was analysed by HPLC in the liquid phase (influent and effluent streams of the reactors) as well as in the solid phase (granular sludge used as biomass). The results indicate a high level of removal (primary biodegradation: 64-85%). Biodegradation was higher in the absence of external co-substrates than in the presence of additional sources of carbon. This indicates that the surfactant can be partially used as carbon and energy source by anaerobic bacteria. Under the operating conditions used, inhibition of the methanogenic activity or any other negative effects on the biomass due to the presence of LAS were not observed. The methanogenic activity remained high and stable throughout the experiment.

摘要

在升流式厌氧污泥床反应器(UASB)中研究了直链烷基苯磺酸盐(LAS)的厌氧生物降解。一个反应器在3个月的时间内投喂易降解底物和商业LAS溶液(反应器1),与此同时,另一个反应器在4个月内投喂不含共底物的商业LAS溶液(反应器2)。两个反应器均以4-5 mg-LAS/l×天的有机负荷率和一天的水力停留时间运行。通过完全质量平衡来确定LAS的生物降解情况。通过高效液相色谱法(HPLC)分析液相(反应器的进水和出水水流)以及固相(用作生物质的颗粒污泥)中的LAS。结果表明去除率很高(一次生物降解:64-85%)。在没有外部共底物的情况下,生物降解率高于存在额外碳源的情况。这表明表面活性剂可被厌氧细菌部分用作碳源和能源。在所使用的操作条件下,未观察到由于LAS的存在而对产甲烷活性产生抑制或对生物质产生任何其他负面影响。在整个实验过程中,产甲烷活性保持高且稳定。

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