A loading rate switch strategy for stable nitritation in mainstream municipal wastewater
暂无分享,去创建一个
Qiong Zhang | Liang Zhang | Yongzhen Peng | Zihao Wang | Wei Zeng | Xiyao Li | Jialin Li
[1] Qiong Zhang,et al. Successful Application of Anammox Using the Hybrid Autotrophic-Heterotrophic Denitrification Process for Low-Strength Wastewater Treatment. , 2022, Environmental science & technology.
[2] Zhiguo Yuan,et al. A 20-Year Journey of Partial Nitritation and Anammox (PN/A): from Sidestream toward Mainstream. , 2022, Environmental science & technology.
[3] Yongzhen Peng,et al. Research progress and prospects of complete ammonia oxidizing bacteria in wastewater treatment , 2022, Frontiers of Environmental Science & Engineering.
[4] Yuyou Li,et al. The main anammox-based processes, the involved microbes and the novel process concept from the application perspective , 2021, Frontiers of Environmental Science & Engineering.
[5] Jialing Ni,et al. Architecture of HAP-anammox granules contributed to high capacity and robustness of nitrogen removal under 7°C. , 2021, Water research.
[6] Yongzhen Peng,et al. Rapidly achieving partial nitrification of municipal wastewater in enhanced biological phosphorus removal (EBPR) reactor: Effect of heterotrophs proliferation and microbial interactions. , 2021, Bioresource technology.
[7] Xi Chen,et al. Partial anammox achieved in full scale biofilm process for typical domestic wastewater treatment , 2021, Frontiers of Environmental Science & Engineering.
[8] Zhiguo Yuan,et al. Unravelling adaptation of nitrite-oxidizing bacteria in mainstream PN/A process: Mechanisms and counter-strategies. , 2021, Water research.
[9] Yongzhen Peng,et al. Rapid initiation and stable maintenance of municipal wastewater nitritation during the continuous flow anaerobic/oxic process with an ultra-low sludge retention time. , 2021, Water research.
[10] Yongzhen Peng,et al. Rapid achieving partial nitrification in domestic wastewater: Controlling aeration time to selectively enrich ammonium oxidizing bacteria (AOB) after simultaneously eliminating AOB and nitrite oxidizing bacteria (NOB). , 2021, Bioresource technology.
[11] Xia Huang,et al. Critical Factors Facilitating Candidatus Nitrotoga To Be Prevalent Nitrite-Oxidizing Bacteria in Activated Sludge. , 2020, Environmental science & technology.
[12] Yongzhen Peng,et al. Recovering partial nitritation in a PN/A system during mainstream wastewater treatment by reviving AOB activity after thoroughly inhibiting AOB and NOB with free nitrous acid. , 2020, Environment international.
[13] Deshuang Yu,et al. Evaluating the potential for sustaining mainstream anammox by endogenous partial denitrification and phosphorus removal for energy-efficient wastewater treatment. , 2019, Bioresource technology.
[14] J. Guest,et al. Wastewater treatment for carbon capture and utilization , 2018, Nature Sustainability.
[15] Qi Zhou,et al. Fast start-up of the cold-anammox process with different inoculums at low temperature (13 °C) in innovative reactor. , 2018, Bioresource technology.
[16] Baikun Li,et al. Partial nitrification-anammox (PNA) treating sewage with intermittent aeration mode: Effect of influent C/N ratios , 2018 .
[17] M. V. van Loosdrecht,et al. Cooperation between Candidatus Competibacter and Candidatus Accumulibacter clade I, in denitrification and phosphate removal processes. , 2017, Water research.
[18] Yifeng Xu,et al. Achieving Stable Nitritation for Mainstream Deammonification by Combining Free Nitrous Acid-Based Sludge Treatment and Oxygen Limitation , 2016, Scientific Reports.
[19] B. Dutilh,et al. Genome-based microbial ecology of anammox granules in a full-scale wastewater treatment system , 2016, Nature Communications.
[20] Mark W. Miller,et al. Control of aeration, aerobic SRT and COD input for mainstream nitritation/denitritation. , 2014, Water research.
[21] Jianmin Wang,et al. Long-term low DO enriches and shifts nitrifier community in activated sludge. , 2013, Environmental science & technology.
[22] Jolein Gloerich,et al. Molecular mechanism of anaerobic ammonium oxidation , 2011, Nature.
[23] H. Siegrist,et al. Combined nitritation-anammox: advances in understanding process stability. , 2011, Environmental science & technology.
[24] M. Loosdrecht,et al. Sewage Treatment with Anammox , 2010, Science.
[25] Zhiguo Yuan,et al. Demonstration of nitrogen removal via nitrite in a sequencing batch reactor treating domestic wastewater. , 2008, Water research.
[26] Aaron Marc Saunders,et al. Anaerobic and aerobic metabolism of glycogen-accumulating organisms selected with propionate as the sole carbon source. , 2006, Microbiology.
[27] C Hellinga,et al. Full-scale application of the SHARON process for treatment of rejection water of digested sludge dewatering. , 2001, Water science and technology : a journal of the International Association on Water Pollution Research.
[28] J. G. Kuenen,et al. Missing lithotroph identified as new planctomycete , 1999, Nature.
[29] Yongzhen Peng,et al. Biological nitrogen removal from sewage via anammox: Recent advances. , 2016, Bioresource technology.
[30] J. J. Heijnen,et al. The sharon process: an innovative method for nitrogen removal from ammonium-rich waste water , 1998 .