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Enhancement of rural domestic sewage treatment performance, and assessment of microbial community diversity and structure using tower vermifiltration

机译:提升农村生活污水处理性能,并利用塔式渗滤技术评估微生物群落的多样性和结构

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摘要

The performance of a novel three-stage vermifiltration (VF) system using the earthworm, Eisenia fetida, for rural domestic wastewater treatment was studied during a 131-day period. The average removal efficiencies of the tower VF planted with Penstemon campanulatus were as follows: chemical oxygen demand, 81.3%; ammonium, 98%; total nitrogen, 60.2%; total phosphorus, 98.4%; total nitrogen, mainly in the form of nitrate. Soils played an important role in removing the organic matter. The three-sectional design with increasing oxygen demand concentration in the effluents, and the distribution of certain oxides in the padding were likely beneficial for ammonium and phosphorus removal, respectively. The microbial community profiles revealed that band patterns varied more or less in various matrices of each stage at different sampling times, while the presence of earthworms intensified the bacterial diversity in soils. Retrieved sequences recovered from the media in VF primarily belonged to unknown bacterium and Bacilli of Firmicutes.
机译:在131天的时间内,研究了使用using Eisenia fetida的新型三级渗透过滤(VF)系统用于农村生活污水的性能。种植有Penstemon campanulatus的VF塔的平均去除效率如下:化学需氧量为81.3%。铵98%;总氮60.2%;总磷98.4%;总氮,主要为硝酸盐形式。土壤在去除有机物中起着重要作用。废水中需氧量浓度增加的三段式设计以及填料中某些氧化物的分布可能分别有利于去除铵和磷。微生物群落特征表明,在不同采样时间下,每个阶段的各个基质中的带状谱或多或少地变化,而worm的存在则加剧了土壤中细菌的多样性。从VF培养基中回收的检索序列主要属于未知细菌和Firmicutes的芽孢杆菌。

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