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- W4220894329 endingPage "126914" @default.
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- W4220894329 abstract "This study developed a continuous-flow non-aerated microalgal-bacterial granular tubular reactor for aquaculture wastewater treatment under natural day-night conditions. Results showed that daytime was favorable for ammonia removal while nighttime for nitrate removal. Over 99% of nitrite-N could be removed over the day-night cycles at a hydraulic retention time of 6 h. However, the phosphorus removal was found to be sensitive to the weather condition, ranging from 35.0% to 96.6%. It was also observed that dissolved oxygen produced by microalgae in daytime was sufficient for creating a 6-h aerobic condition in nighttime for sustaining heterotrophic activity. Chlorella and Leptolyngbya were identified as the most abundant algae related to weather changes. Metagenomics analysis revealed that the high nitrite removal relied mainly on nitrite reduction. These experimental findings offer new insights into the non-aerated microalgal-bacterial granular sludge for environmentally sustainable aquaculture wastewater treatment." @default.
- W4220894329 created "2022-04-03" @default.
- W4220894329 creator A5009059784 @default.
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- W4220894329 date "2022-04-01" @default.
- W4220894329 modified "2023-10-14" @default.
- W4220894329 title "A continuous-flow non-aerated microalgal-bacterial granular sludge process for aquaculture wastewater treatment under natural day-night conditions" @default.
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- W4220894329 doi "https://doi.org/10.1016/j.biortech.2022.126914" @default.
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