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首页> 外文期刊>Ecotoxicology >Biodegradability of tetrabromobisphenol A and tribromophenol by activated sludge.
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Biodegradability of tetrabromobisphenol A and tribromophenol by activated sludge.

机译:活性污泥对四溴双酚A和三溴苯酚的生物降解能力。

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Laboratory reactor systems based on the conventional (aerobic) activated sludge process and on the contact (anaerobic) process were operated almost one year in order to develop a biological process for the degradation of the fire retardant tetrabromobisphenol A (TBBPA) and to find out if its degradation might result in the formation of the endocrine disruptor bisphenol A (BPA). The reactors were fed a TBBPA waste mixture containing also tribromophenol (TBP), and added with contaminated sediments that might have contained indigenous bacteria exposed to these compounds. Various organic compounds were used as potential electron donors to enhance growth of halorespiring bacteria that would debrominate the TBBPA and make it available for further aerobic mineralization. In spite of the various operating strategies applied and the different carbon sources added, no TBBPA biodegradation has been observed and no accumulation of intermediates such as BPA in any of the aerobic or anaerobic reactors has been detected. TBP on the other hand, was found to be easily biodegraded by aerobic cultures simulating the activated sludge process. This was linked to consistent accumulation of bromides, released to the liquid following TBP breakdown.
机译:基于常规(好氧)活性污泥工艺和接触(厌氧)工艺的实验室反应器系统运行了将近一年,以开发降解阻燃四溴双酚A(TBBPA)的生物工艺,并找出是否其降解可能导致内分泌干扰物双酚A(BPA)的形成。向反应堆中加入还含有三溴酚(TBP)的TBBPA废物混合物,并加入可能含有暴露于这些化合物的原生细菌的污染沉积物。各种有机化合物被用作潜在的电子供体,以增强卤呼吸细菌的生长,从而使TBBPA脱溴,使其可用于进一步的需氧矿化。尽管应用了各种操作策略并添加了不同的碳源,但未观察到TBBPA生物降解,也未检测到任何好氧或厌氧反应器中中间体(如BPA)的积累。另一方面,通过模拟活性污泥过程的需氧培养发现TBP易于生物降解。这与在TBP分解后释放到液体中的溴化物的持续积累有关。

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