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Enhancement of rural domestic sewage treatment performance, and assessment of microbial community diversity and structure using tower vermifiltration
Authors:Wang Longmian  Guo Feihong  Zheng Zheng  Luo Xingzhang  Zhang Jibiao
Affiliation:State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210046, PR China.
Abstract: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.
Keywords:VF  vermifiltration  PCR-DGGE  polymerase chain reaction-denaturing gradient gel electrophoresis  COD  chemical oxygen demand  NH3-N  ammonia nitrogen  BOD5  5 day BOD  HLs  hydraulic loads  TN  total nitrogen  TP  total phosphorus  DO  dissolved oxygen  PVC  polyvinyl chloride  NO3-N  nitrate nitrogen  OM  organic matter  XRF  X-ray fluorescence  S1-1  0-15 cm soil in the first stage  S1-2  15-30 cm soil in the first stage  S1-3  silver sand in the first stage  S1-4  detritus in the first stage  S2-1  0-15 cm soil in the second stage  S2-2  15-30 cm soil in the second stage  S2-3  silver sand in the second stage  S2-4  detritus in the second stage  S3-1  0-15 cm soil in third stage  S3-2  15-30 cm soil in the third stage  S3-3  silver sand in the third stage  S3-4  detritus in the third stage
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