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Anaerobic-Aerobic Process for Microbial Degradation of Tetrabromobisphenol A

机译:厌氧-好氧工艺降解四溴双酚A

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Tetrabromobisphenol A (TBBPA) is a flame retardant that is used as an additive during manufacturing of plastic polymers and electronic circuit boards. Little is known about the fate of this compound in the environment. In the current study we investigated biodegradation of TBBPA, as well as 2,4,6-tribromophenol (TBP), in slurry of anaerobic sediment from a wet ephemeral desert stream bed contaminated with chemical industry waste. Anaerobic incubation of the sediment with TBBPA and peptone-tryptone-glucose-yeast extract medium resulted in a 80% decrease in the TBBPA concentration and accumulation of a single metabolite. This metabolite was identified by gas chromatography-mass spectrometry (GC-MS) as nonbrominated bisphenol A (BPA). On the other hand, TBP was reductively dehalogenated to phenol, which was further metabolized under anaerobic conditions. BPA persisted in the anaerobic slurry but was degraded aerobically. A gram-negative bacterium (strain WH1) was isolated from the contaminated soil, and under aerobic conditions this organism could use BPA as a sole carbon and energy source. During degradation of BPA two metabolites were detected in the culture medium, and these metabolites were identified by GC-MS and high-performance liquid chromatography as 4-hydroxybenzoic acid and 4-hydroxyacetophenone. Both of those compounds were utilized by WH1 as carbon and energy sources. Our findings demonstrate that it may be possible to use a sequential anaerobic-aerobic process to completely degrade TBBPA in contaminated soils.
机译:四溴双酚A(TBBPA)是一种阻燃剂,在制造塑料聚合物和电子电路板时用作添加剂。对于这种化合物在环境中的命运知之甚少。在当前的研究中,我们调查了湿的短暂沙漠流化床中被化学工业废料污染的厌氧沉积物浆液中TBBPA以及2,4,6-三溴酚(TBP)的生物降解。用TBBPA和蛋白one-rypto-葡萄糖-酵母发酵液对沉淀物进行厌氧培养后,TBBPA的浓度降低了80%,单一代谢物的积累也减少了。通过气相色谱-质谱法(GC-MS)将这种代谢物鉴定为非溴化双酚A(BPA)。另一方面,TBP还原脱卤为苯酚,苯酚在厌氧条件下进一步代谢。 BPA持续存在于厌氧浆液中,但需氧降解。从受污染的土壤中分离出革兰氏阴性细菌(菌株WH1),在有氧条件下,该生物可以将BPA用作唯一的碳和能源。在BPA降解期间,在培养基中检测到两种代谢物,这些代谢物通过GC-MS和高效液相色谱法鉴定为4-羟基苯甲酸和4-羟基苯乙酮。 WH1将这两种化合物用作碳和能源。我们的发现表明,有可能使用顺序厌氧-好氧工艺来完全降解受污染土壤中的TBBPA。

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