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Dive into the research topics where Xiaolian Wang is active.

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Featured researches published by Xiaolian Wang.


Water Research | 2009

Achieving nitrogen removal via nitrite in a pilot-scale continuous pre-denitrification plant

Yong Ma; Yongzhen Peng; Shuying Wang; Zhiguo Yuan; Xiaolian Wang

Nitrogen removal via nitrite (the nitrite pathway) is beneficial for carbon-limited biological wastewater treatment plants. However, partial nitrification to nitrite has proven difficult in continuous processes treating domestic wastewater. The nitrite pathway is achieved in this study in a pilot-scale continuous pre-denitrification plant (V=300 L) treating domestic wastewater by controlling the dissolved oxygen (DO) concentration at 0.4-0.7 mg/L. It is demonstrated that the nitrite pathway could be repeatedly and reliably achieved, with over 95% of the oxidized nitrogen compounds at the end of the aerobic zone being nitrite. The nitrite pathway improved the total nitrogen (TN) removal by about 20% in comparison to the nitrate pathway, and also reduced aeration costs by 24%. FISH analysis showed that the nitrite oxidizing bacteria (NOB) population gradually reduced at low DO levels, and reached negligible levels when stable nitrite pathway was established. It is hypothesized that NOB was washed out due to its relatively lower affinity with oxygen. A lag phase was observed in the establishment of the nitrite pathway. Several sludge ages were required for the onset of the nitrite pathway after the application of low DO levels. However, nitrite accumulation increased rapidly after that. A similar lag phase was observed for the upset of the nitrite pathway when a DO concentration of 2-3 mg/L was applied. The nitrite pathway negatively impacted on the sludge settleability. A strong correlation between the sludge volume index and the degree of nitrite accumulation was observed.


Water Research | 2007

Anaerobic metabolism of Defluviicoccus vanus related glycogen accumulating organisms (GAOs) with acetate and propionate as carbon sources

Yu Dai; Zhiguo Yuan; Xiaolian Wang; Adrian Oehmen; Jurg Keller


Desalination | 2009

Improving nutrient removal of the AAO process by an influent bypass flow by denitrifying phosphorus removal.

Yong Ma; Yongzhen Peng; Xiaolian Wang


Biotechnology and Bioengineering | 2008

The Denitrification Capability of Cluster 1 Defluviicoccus vanus-Related Glycogen-Accumulating Organisms

Xiaolian Wang; Raymond J. Zeng; Yu Dai; Yongzhen Peng; Zhiguo Yuan


Journal of Chemical Technology & Biotechnology | 2005

Nutrient removal performance of an anaerobic–anoxic–aerobic process as a function of influent C/P ratio

Y. Ma; Yongzhen Peng; Xiaolian Wang; Shuying Wang


Bioprocess and Biosystems Engineering | 2007

Short-cut nitrification of domestic wastewater in a pilot-scale A/O nitrogen removal plant

Xiaolian Wang; Yong Ma; Yongzhen Peng; Shuying Wang


Journal of Chemical Technology & Biotechnology | 2006

Optimisation of anaerobic/anoxic/oxic process to improve performance and reduce operating costs

Yongzhen Peng; Xiaolian Wang; Weimin Wu; Jun Li; Jie Fan


Archive | 2008

A2/O+A/O technique wastewater biological denitrification phosphorous removal process and its device

Yongzhen Peng; Xiaolian Wang; Shuying Wang


Archive | 2010

Method for optimizing controlling denitrification and phosphorus release in double precipitation pool by A2/O technique

Xiaolian Wang; Yongzhen Peng; Shuying Wang


Chemical Engineering & Technology | 2007

Effects of Operational Variables on Nitrogen Removal Performances and Its Control in a Pre‐Denitrification Plant

Xiaolian Wang; Yongzhen Peng; Yong Ma; Shuying Wang

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Shuying Wang

Beijing University of Technology

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Yongzhen Peng

Beijing University of Technology

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Yong Ma

Beijing University of Technology

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Zhiguo Yuan

University of Queensland

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Y. Ma

Harbin Institute of Technology

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Yu Dai

University of Queensland

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Jie Fan

Harbin Institute of Technology

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Jun Li

Beijing University of Technology

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Wang Sy

Beijing University of Technology

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Yu Peng

Harbin Institute of Technology

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