China Agricultural University, China; Princeton University, USA.
Princeton University, USA.
Environ Pollut. 2019 Apr;247:248-255. doi: 10.1016/j.envpol.2019.01.066. Epub 2019 Jan 18.
The degradation of trichloroethylene (TCE) and tetrachloroethylene (PCE), in incubations where ammonium was oxidized while iron was being reduced indicates that these compounds can be degraded during the Feammox process by Acidimicrobiaceae sp. A6 (ATCC, PTA-122488). None of these compounds were degraded in incubations to which no ammonium was added, indicating that they were degraded during the oxidation of ammonium. Degradation of TCE and PCE (ranging between 32% and 55%) was observed in incubations with a pure Acidimicrobiaceae sp. A6 culture as well as an Acidimicrobiaceae sp. A6 enrichment culture over a 2-week period. In addition to these batch studies, a column study, with a 5-h hydraulic residence time, was conducted contrasting the degradation of TCE in iron-rich soil columns that were either seeded with a pure or an enrichment culture of Acidimicrobiaceae sp. A6 to achieve ammonium oxidation under iron reduction, and a control column that was initially not seeded and later seeded with Geobacter metallireducens. While there was ∼22% TCE removal in the columns seeded with Acidimicrobiaceae sp. A6, there was no removal in the unseeded column or the column seeded with G. metallireducens which was being operated under iron reducing conditions. Feammox is an anoxic process that requires acidic conditions. Hence, these results indicate that this process might be harnessed where other bioremediation strategies are difficult, since many require neutral or alkaline conditions, and supplying ammonium to an anoxic aquifer is relatively easy, since there are not many processes that will oxidize ammonium in the absence of dissolved oxygen.
三氯乙烯(TCE)和四氯乙烯(PCE)在铵氧化而铁还原的孵育中降解,表明这些化合物可以在 Acidimicrobiaceae sp. A6(ATCC,PTA-122488)的 Feammox 过程中降解。在没有添加铵的孵育中,没有这些化合物降解,表明它们在铵氧化过程中降解。在纯 Acidimicrobiaceae sp. A6 培养物以及 Acidimicrobiaceae sp. A6 富集培养物的孵育中,观察到 TCE 和 PCE 的降解(范围为 32%至 55%)在两周的时间内。除了这些批量研究外,还进行了柱研究,水力停留时间为 5 小时,与富含铁的土壤柱进行了对比,这些土壤柱要么接种了纯或富集的 Acidimicrobiaceae sp. A6 培养物以实现铁还原下的铵氧化,要么接种了初始未接种的对照柱,然后接种了 Geobacter metallireducens。虽然在接种了 Acidimicrobiaceae sp. A6 的柱中有约 22%的 TCE 去除,但在未接种的柱或接种了 G. metallireducens 的柱中没有去除,G. metallireducens 是在铁还原条件下运行的。Feammox 是一种缺氧过程,需要酸性条件。因此,这些结果表明,在其他生物修复策略难以实施的地方,可能会利用这种过程,因为许多策略需要中性或碱性条件,并且向缺氧含水层中添加铵相对容易,因为在没有溶解氧的情况下,很少有过程会氧化铵。