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Degradation of tetrabromobisphenol A in a paddy soil during sequential anoxic-oxic incubation: Kinetics metabolites and potential pathways

机译:连续缺氧-温育过程中水稻土中四溴双酚A的降解:动力学代谢物和潜在途径

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摘要

Due to the increasing pollution of tetrabromobisphenol A (TBBPA) in paddy soils, it is of great importance to explore the degradation of TBBPA under repeated anoxic-oxic conditions. In the present study, the degradation of TBBPA (kinetics, metabolites and potential pathways) and the influence of low molecular weight organic acid i.e., lactic acid were investigated in a paddy soil during sequential anoxic-oxic incubations. Under the anoxic condition, TBBPA in the non-sterile soils was efficiently debrominated into three intermediates (including tri-BBPA, di-BBPA and mono-BBPA) and bisphenol A (BPA) with a rate constant (k) of 0.0371 d−1 and a half-life (t1/2) of 60.8 d. The debromination end product (BPA) steadily accumulated. Next, turning to the oxic conditions, the anaerobically accumulated BPA degraded rapidly, while the intermediates and TBBPA were desorbed from the bound residues and were persistent. The detection of tri-BBPA followed by di-BBPA and mono-BBPA thereafter indicated that the dehalogenation of TBBPA was likely a stepwise removal of bromine atoms. A pathway of TBBPA → tri-BBPA → di-BBPA → mono-BBPA → BPA was thus proposed for TBBPA degradation. The degradation of TBBPA and its metabolites was biologically mediated. Moreover, the biodegradation of TBBPA could be significantly accelerated by the addition of lactic acid as an exogenous carbon source and electron donor, with k being increased to 0.0766 d−1 and t1/2 being shortened to 31.9 d. The information will improve our understanding of biotic process associated with agronomic practices (such as applying organic fertilizers) contributing to TBBPA attenuation in the natural soil environment.
机译:由于稻田土壤中四溴双酚A(TBBPA)的污染不断增加,因此探索在反复缺氧-缺氧条件下TBBPA的降解具有重要意义。在本研究中,在连续缺氧-缺氧孵育过程中,研究了稻田土壤中TBBPA的降解(动力学,代谢产物和潜在途径)以及低分子量有机酸(即乳酸)的影响。在缺氧条件下,非无菌土壤中的TBBPA被有效地脱溴为三个中间体(包括三-BBPA,二-BBPA和一-BBPA)和双酚A(BPA),速率常数(k)为0.0371 d -1 ,半衰期(t1 / 2)为60.8 d。脱溴终产物(BPA)稳定积累。接下来,转向有氧条件,厌氧积累的BPA迅速降解,而中间体和TBBPA从结合的残基上解吸并保持持久。随后检测到tri-BBPA,然后检测到di-BBPA和mono-BBPA,表明TBBPA的脱卤很可能是逐步除去溴原子。因此提出了TBBPA→→tri-BBPA→→di-BBPA→→mono-BBPA→→BPA的途径用于TBBPA的降解。 TBBPA及其代谢产物的降解是生物介导的。此外,通过添加乳酸作为外源碳源和电子供体,可显着促进TBBPA的生物降解,其中k增加至0.0766 d -1 ,t1 / 2缩短至31.9 d。 。这些信息将增进我们对与农艺实践(例如,施用有机肥料)相关的生物过程的理解,这有助于在天然土壤环境中减少TBBPA。

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