倪寿清
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Gender:Male
Education Level:Postgraduate (Doctoral)
Alma Mater:山东大学
Paper Publications
- [141] ShouQing Ni , xushiping and Xu Fang. One-pot synthesis of highly active Ni/Fe nano-bimetal by simultaneous ball milling and in situ chemical deposition. RSC advances, 2018.
- [142] ShouQing Ni and liangshuang. Effect of zero-valent iron on the start-up performance of anaerobic ammonium oxidation (anammox) process. environmental science and pollution research, 22, 2925, 2015.
- [143] ShouQing Ni , cuizhaojie , Xu Fang and 郭蓓蓓. Transformation of the zero valent iron dosage effect on anammox after long-term culture: From inhibition to promotion. Process biochemistry, 78, 132, 2019.
- [144] ShouQing Ni , yueqinyan , gaobaoyu and xushiping. Introduction of porous structure via facile carbon-dot modulation: a feasible and promising approach for improving the photocatalytic capability of sulfur doped g-C3N4. Catalysis Today, 2019.
- [145] zhangjian , gaobaoyu , ShouQing Ni and 王屿. Autoclaved sludge as the ideal seed to culture anammox bacteria: Reactor performance and microbial community diversity. Bioresource technology, 244, 391, 2017.
- [146] ShouQing Ni and 葛成浩. Bacterial community evolutions driven by organic matter and powder activated carbon in simultaneous anammox and denitrification (SAD) process. Bioresource technology, 251, 13, 2018.
- [147] gaobaoyu , ShouQing Ni and 卜翠娜. Dissimilatory Nitrate Reduction to Ammonium in the Yellow River Estuary: Rates, Abundance, and Community Diversity. scientific reports, 7, 2017.
- [148] gaobaoyu , ShouQing Ni , xushiping and 任龙飞. Microbial dynamics of biofilm and suspended flocs in anammox membrane bioreactor: The effect of non-woven fabric membrane. Bioresour. Technol., 247, 259, 2018.
- [149] gaobaoyu , ShouQing Ni and 孙娜. Realization of microbial community stratification for single-stage nitrogen removal in a sequencing batch biofilter granular reactor. Bioresource technology, 241, 681, 2017.
- [150] ShouQing Ni , gaobaoyu and zhouqingxin. Production of more toxic hexa-brominated diphenyl ether from rapid biotransformation of decabromodiphenyl ether in anaerobic granular sludge. International Biodeterioration & Biodegradation, 134, 7, 2018.