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Xiuhong Liu

Researcher at Beijing University of Technology

Publications -  31
Citations -  1379

Xiuhong Liu is an academic researcher from Beijing University of Technology. The author has contributed to research in topics: Denitrification & Nitrification. The author has an hindex of 14, co-authored 26 publications receiving 924 citations. Previous affiliations of Xiuhong Liu include Harbin Institute of Technology & Renmin University of China.

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Stratification of Extracellular Polymeric Substances (EPS) for Aggregated Anammox Microorganisms.

TL;DR: The results showed that slime and TB-EPS (tightly bound EPS) were closely related with water quality and sludge morphology, and could be used as the indicators for anammox microbial survival ability and microbial aggregate morphology.
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Nitrogen removal via nitrite from municipal wastewater at low temperatures using real-time control to optimize nitrifying communities.

TL;DR: The obtained results showed that high nitrogen removal efficiency with effluent total nitrogen below 3 mg/L could be achieved and that the nitrifying microbial communities were optimized.
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N2O Production during Nitrogen Removal via Nitrite from Domestic Wastewater: Main Sources and Control Method

TL;DR: N(2)O production during nitrogen removal via nitrite decreased about 50% by applying the step-feed SBR, due to the effective control of nitrite and ammonia, the precursors of N(2]O production.
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Nitrification–denitrification via nitrite in SBR using real-time control strategy when treating domestic wastewater

TL;DR: In this paper, a lab-scale sequencing batch reactor (SBR) was employed to treat low C/N ratio municipal wastewater to investigate the stability of nitrification-denitrification via nitrite using a real-time control strategy to switch aeration on and off.
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Achieving partial denitrification through control of biofilm structure during biofilm growth in denitrifying biofilter.

TL;DR: The results showed biofilm structure variations caused the differences between nitrate specific reduction rate (NaSRR) and nitrite specific reduction rates (NiSRR), which led to nitrite accumulation in different degree at different biofilm formation phases.