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New insights of enhanced anaerobic degradation of refractory pollutants in coking wastewater: Role of zero-valent iron in metagenomic functions

机译:焦化废水中耐火污染物增强厌氧降解的新见解:零价熨斗在均衡功能中的作用

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Coking wastewater (CWW) has long been a serious challenge for anaerobic treatment due to its high concentrations of phenolics and nitrogen-containing heterocyclic compounds (NHCs). Herein, we proposed and validated a new strategy of using zero-valent iron (ZVI) to strengthen the anaerobic treatment of CWW. Results showed that COD removal efficiencies was increased by 9.5-13.7% with the assistance of ZVI. GC-MS analysis indicated that the removal of phenolics and NHCs was improved, and the intermediate 2(1H)-Quinolinone of quinoline degradation was further removed by ZVI addition. High-throughput sequencing showed that phenolics and NHCs degraders, such as Levilinea and Sedimentibacter were significantly enriched, and the predicted gene abundance of xenobiotic degradation and its downstream metabolic pathways was also increased by ZVI. Network and redundancy analysis indicated that the decreased oxidation-reduction potential (ORP) by ZVI was the main driver for microbial community succession. This study provided an alternative strategy for strengthening CWW anaerobic treatment.
机译:由于其高浓度的酚类和含氮杂环化合物(NHC),焦化废水(CWW)长期以来对厌氧治疗的严重挑战。在此,我们提出并验证了使用零价铁(ZVI)的新策略,以加强CWW的厌氧处理。结果表明,在ZVI的帮助下,COD去除效率增加了9.5-13.7%。 GC-MS分析表明,改善了去除酚类和NHC,并通过ZVI加入进一步除去喹啉降解的中间体2(1H)-quinolinone。高通量测序显示酚类和NHCS降解剂,例如Levilinea和沉重杆菌,并且ZVI也增加了异丙酚降解及其下游代谢途径的预测基因丰富。网络和冗余分析表明,ZVI的氧化还原电位(ORP)降低是微生物群落连续的主要驱动器。本研究提供了加强CWO厌氧治疗的替代策略。

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