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Bacterial community activity and dynamics in the biofilm of an experimental hybrid wetland system treating greywater

机译:一种实验杂交湿地系统治疗Greywater的生物膜中的细菌群落活动和动力学

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The objectives of this study were to determine the biofilm microbial activity and bacterial community structure and successions in greywater treatment filters and to relate the treatment efficiency to the bacterial community parameters. This 10-month study was performed in a newly established experimental system for domestic greywater treatment that consisted of three parallel vertical flow filters (VFs) followed by a horizontal flow filter (HF). A rapid increase in the bacterial community abundance occurred during the first 85days of filter operations, followed by a short-term decrease and the stabilization of the 16S rRNA gene copy numbers at average levels of 1.2x10(9) and 3.2x10(8) copies/g dw in VFs and HF, respectively, until the end of the experiment. The dominant bacterial phyla and genera differed between the VFs and HF. The temporal variation in the bacterial community structure was primarily related to the species replacement, and it was significantly affected by the influent organic carbon and nitrogen compounds in the VFs and the ammonia and organic carbon in the HF filters. Despite the differences in the community structure and assembly mechanisms, the temporal dynamics of the bacterial community showed high congruence between the filter types. The treatment efficiency was related to the biofilm bacterial community diversity and abundance and the abundance of certain bacterial genera in the VF filters. The results suggest that the dominant pathway of nitrogen removal by greywater treatment VFs occurs via coupled heterotrophic nitrification and denitrification, while the contribution of aerobic denitrification is temporally variable in these filters.
机译:本研究的目的是测定灰水处理过滤器中生物膜微生物活性和细菌群落结构和继承,并将治疗效率与细菌群落参数相关联。该10个月的研究是在新建立的家庭灰水处理的实验系统中进行,该系统由三个平行的垂直流动滤波器(VFS)组成,然后是水平流过滤器(HF)。在过滤操作的前85天发生的细菌群体丰富的快速增加,其次是短期下降,并且在平均水平为1.2×10(9)和3.2x10(8)份拷贝的16s rRNA基因拷贝数的稳定/ g分别在VFS和HF中,直到实验结束。 vfs和hf之间的显性细菌植物和属不同。细菌群落结构的时间变化主要与物种替代品相关,并且在vfs和氨和HF过滤器中的氨和有机碳中受到影响的有机碳和氮化合物的显着影响。尽管社区结构和组装机制存在差异,但细菌群落的时间动态在过滤器类型之间表现出高度的同时。治疗效率与生物膜细菌群落的多样性和丰富以及VF过滤器中某些细菌属的丰度有关。结果表明,通过偶联的异养硝化和反硝化发生灰水处理VF的氮去除的显性途径,而在这些过滤器中有氧脱氮的贡献在时间上变化。

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