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Yue Yuan

Researcher at Beijing University of Technology

Publications -  9
Citations -  430

Yue Yuan is an academic researcher from Beijing University of Technology. The author has contributed to research in topics: Fermentation & Denitrification. The author has an hindex of 7, co-authored 9 publications receiving 321 citations.

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Enhanced nitrogen and phosphorus removal from municipal wastewater in an anaerobic-aerobic-anoxic sequencing batch reactor with sludge fermentation products as carbon source.

TL;DR: The AOA-SBR demonstrated potential to solve the dual problem of insufficient carbon source and sludge reduction and achieved simultaneous partial nitrification and denitrification, aerobic phosphorus uptake and anoxicDenitrification through the real-time control and the addition of sludge fermentation products.
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Long-term effect of pH on short-chain fatty acids accumulation and microbial community in sludge fermentation systems.

TL;DR: This study elucidated the effects of pH on WAS fermentation, and established the correlation of microbial structure with SCFAs accumulations and sludge reduction.
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Improving municipal wastewater nitrogen and phosphorous removal by feeding sludge fermentation products to sequencing batch reactor (SBR).

TL;DR: Feeding sequencing batch reactor (SBR) with sludge alkaline fermentation products as carbon sources resulted in NO2--N accumulation and denitrifying phosphorus removal via nitrite (DPRN) and Illumina MiSeq sequencing indicated that ammonium-oxidizing bacteria and den itrifying polyphosphate accumulating organisms were enriched in F-SBR.
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Short-chain fatty acids production and microbial community in sludge alkaline fermentation: Long-term effect of temperature.

TL;DR: Enrichment of functional bacteria and higher microbial activities resulted in the improved SCFAs at mesotherm, according to Illumina MiSeq sequencing.
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Impact of partial nitritation degree and C/N ratio on simultaneous Sludge Fermentation, Denitrification and Anammox process

TL;DR: Impact of partial nitritation degree on SFDA process was investigated and the result showed that, NO2(-)/NH4(+) ratios between 2 and 10 were appropriate for the co-existence of denitrification and anammox together in the SFDA reactor, and denitification instead of anamm ox contributed greater for nitrogen removal.