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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial interspecific interaction and nitrogen metabolism pathway for the treatment of municipal wastewater by iron carbon based constructed wetland
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Microbial interspecific interaction and nitrogen metabolism pathway for the treatment of municipal wastewater by iron carbon based constructed wetland

机译:铁碳基构造湿地处理城市废水的微生物间隙相互作用和氮代谢途径

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In order to explore the pollutant removal performance and interspecific interaction in constructed wetland (CW) with Fe-0-C filler, constructed wetland with Fe-0-C filler (CW-Fe) and with ceramsite filler (CW-C) were set up. Besides, the nutrients removal and interspecific interaction were analyzed, and the results showed that total nitrogen (TN) removal efficiency of CW-Fe system without carbon source was lower than that in CW-C system though CW-Fe system could convert macro-molecular organic matter into micro-molecular organic matter. However, ammonia nitrogen (NH4+-N) increase was observed in CW-Fe system with better total phosphorus (TP) removal performance. High-throughput sequencing showed that the microbial richness and abundance of Bacteroides, Firmicutes, Chlorofeli and Actinobacteria in the CW with Fe-0-C filler was significantly higher than with ceramsite filler. The interaction between two CWs was significantly different, and the functional enzymes abundance of nitrate nitrogen (NO3--N) to NH4+-N transformation in CW-Fe system significantly increased.
机译:为了探讨由Fe-0-C填充物的构建湿地(CW)的污染物去除性能和间隙相互作用,设定了用Fe-0-C填料(CW-Fe)和陶瓷填料(CW-C)的湿地构建的湿地向上。此外,分析了去除和间隙相互作用的营养物质,结果表明,CW-Fe系统可以转化宏分子,CW-FE系统的总氮(TN)去除效率低于CW-C系统。有机物进入微量分子有机物质。然而,在CW-FE系统中观察到氨氮(NH4 + -N)增加,具有更好的总磷(TP)去除性能。高通量测序表明,使用Fe-0-C填料的CW中的拟菌,骨质,氯酚和抗菌剂的微生物丰富和丰度显着高于Ceramsite填料。两个CWS之间的相互作用显着差异,并且CW-Fe系统中的硝酸氮(NO3-N)对NH 4 + -N转化的功能酶明显增加。

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