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Anaerobic nonylphenol ethoxylate degradation coupled to nitrate reduction in a modified biodegradability batch test

机译:在改良的生物降解性批次测试中,厌氧壬基酚乙氧基化物的降解与硝酸盐的还原有关

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The aim of this work was to elucidate the role of nitrate as a terminal electron acceptor on the biodegradation of NPEO. We have characterized the products of NPEO degradation by mixed microbial communities in anaerobic batch tests by means of HPLC, ~1H NMR and GC-MS. Anaerobic degradation of NPEO was strictly dependent on the presence of nitrate. Within seven days of anoxic incubation, NP2EO appeared as the major degradation product. After 21 days, NP was the main species detected, and was not degraded further even after 35 days. Nitrate concentration decreased in parallel with NPEO de-ethoxylation. A transient accumulation of nitrite was observed within the time period in which NP formation reached its maximum production. The observed generation of nonylphenol coupled to nitrate reduction suggests that the microbial consortium possessed an alternate pathway for the degradation of NPEO, which was not accessible under aerobic conditions.
机译:这项工作的目的是阐明硝酸盐作为末端电子受体在NPEO生物降解中的作用。我们已经通过HPLC,〜1H NMR和GC-MS在厌氧分批测试中表征了混合微生物群落对NPEO降解的产物。 NPEO的厌氧降解严格取决于硝酸盐的存在。在缺氧培养的七天内,NP2EO成为主要降解产物。 21天后,NP是检测到的主要物种,即使35天后也未进一步降解。硝酸盐浓度与NPEO脱乙氧基化同时降低。在NP形成达到最大产量的时间内观察到亚硝酸盐的短暂积累。观察到的壬基酚的生成与硝酸盐还原的耦合表明,微生物聚财团具有NPEO降解的替代途径,这在有氧条件下是不可获得的。

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