方向一:水处理高级氧化法 (1)Feng Liu;Huanhuan Zhang;Nian Liu;Junxia Wang;Maolin Chen;Feiyue Qian*. Enhanced removal of refractory organic pollutants in wafer surface treatment wastewater by combining Fenton oxidation and O3/H2O2/FeOOH: Removal efficiency, intermediate composition, and toxicity prediction. Journal of Water Process Engineering. 2024, 64: 105572. (2) Xin Xia;Yu Yan;Junpeng Luo;Tingting Liu;Bingdang Wu;Feiyue Qian*. Effects of peroxide types on the removal performance and mechanism of sulfonamide antibiotics using graphene-based catalytic membranes.Process Safety and Environmental Protection. 2023, 179: 362-372. (3)Feiyue Qian*;Junpeng Luo;Honggui Yin;Feng Liu;Shiqian Gao;Xinyu Gu. Carbonaceous composite membranes for peroxydisulfate activation to remove sulfamethoxazole in a real water matrix. Chemosphere. 2022, 288:132597. (4) Junpeng Luo;Tingting Liu;Feiyue Qian*;Xin Xia;Xiaoji Zhou;Yun Zhu. Boosting non-radical oxidation in peroxydisulfate activation with carbonaceous catalytic membranes by coupling structural defects and nitrogen doping sites. Journal of Environmental Chemical Engineering. 2022, 10(3): 108101. (5) Jiayi Sheng;Honggui Yin;Feiyue Qian*;Huimin Huang;Shiqian Gao;Jianfang Wang. Reduced graphene oxide-based composite membranes for in-situ catalytic oxidation of sulfamethoxazole operated in membrane filtration, Separation and Purification Technology. 2020, 236: 116275. (6)Huimin Huang;Jiayi Sheng;Feiyue Qian*; Feng Zhou;Shiqian Gao; Xiaofang Shen. Effects of graphene oxide incorporation on the mats structure and performance of carbon nanotubes composite membranes.Research on Chemical Intermediates.2019, 45: 533-548. (7)Feiyue Qian; Xianbo Sun; Yongdi Liu*. Removal characteristics of organics in bio-treated textile wastewater reclamation by a stepwise coagulation and intermediate GAC/O3oxidation process. Chemical Engineering Journal. 2013, 214: 112-118. (8)Feiyue Qian; Xianbo Sun; Yongdi Liu*. Effect of ozone on removal of dissolved organic matter and its biodegradability and adsorbability in biotreated textile effluents. Ozone Science & Engineering. 2013, 35(1): 7-15. (9)严昱;夏芯;骆俊鹏;刘大朋;钱飞跃*. 氧化剂类型对rGO/CNTs催化膜去除水中消炎药成分的影响.化工进展,2024, 43(3): 1436-1445. (10)周丰;黄慧敏;钱飞跃*;沈耀良;周晓吉;李欣;夏雪. 碳纳米管负载层结构对复合膜分离性能的影响研究.化工学报, 2018, 69(5): 2318-2326. 方向二:短程生物脱氮技术 (1)Feiyue Qian*; Yaru Liu; Lingli He; Zangyuan Dong; Maolin Chen; Wenru Liu. Metagenomic insights into microbial metabolic mechanisms of a combined solid- phase denitrification and anammox process for nitrogen removal in mainstream wastewater treatment. Journal of Environmental Management. 2024, 366: 121797. (2)Feiyue Qian; Yaru Liu; Chenyun Mo; Huan Zhang; Feng Yan; Junjun Gao; Jinlong Zhuang. Response of partial nitritation/anammox granules to biodegradable organic input in bacterial community and functions. Journal of Water Process Engineering. 2022, 51: 103442. (3)Feiyue Qian*; Li Zhang; Feng Liu; Xiaoqing Ji; Ziheng Huang; Jianfang Wang. Size characterization of red cores in partial nitritation/anammox granular sludge: Nitrogen removal activity and bacterial structure indication. Journal of Environmental Chemical Engineering. 2022, 10: 106924. (4)Feiyue Qian; Shuhui Cui; Feng Liu; Junpeng Luo; Ziheng Huang; Jianfang Wang*. Effect of hydraulic selection pressure on the characteristics of partial nitritation/anammox granular sludge in a continuous-flow reactor. Environmental Technology & Innovation. 2021, 24: 102042. (5)Jianfang Wang; Jiayi Sheng;Feiyue Qian*; Xiaoqing Ji; Honggui Yin; Junxia Wang. Impacts of nanoscale zero-valent iron on ammonium-oxidizing performance of nitritation granular sludges with different spatial morphologies and its biosorption behavior.Research on Chemical Intermediates. 2020, 46: 769-781. (6)Jianfang Wang; Zeyu Zhang;Feiyue Qian*; Yaoliang Shen; Zekun Qi; Xiaoqing Ji, Emma Marcello Lagu Kajamisso. Rapid start-up of a nitritation granular reactor using activated sludge as inoculum at the influent organics/ammonium mass ratio of 2/1. Bioresource Technology, 2018, 256: 170-177. (7)Feiyue Qian#; Gebreyesus Abebe Temesgen#; Jianfang Wang*; Yaoliang Shen; Wenru Liu; Lulin Xie. Single-stage autotrophic nitrogen removal process at high loading rate: granular reactor performance, kinetics, and microbial characterization. Applied Microbiology and Biotechnology. 2018, 102 (5): 2379-2389. (8)Feiyue Qian; Jianfang Wang*; Yaoliang Shen; Yan Wang; Shuyong Wang; Xi Chen. Achieving high performance completely autotrophic nitrogen removal in a continuous granular sludge reactor. Biochemical Engineering Journal. 2017, 118: 97-104. (9)Jianfang Wang; Feiyue Qian*; Xiaopeng Liu; Wenru Liu; Shuyong Wang; Yaoliang Shen. Cultivation and characteristics of partial nitrification granular sludge in a sequencing batch reactor inoculated with heterotrophic granules.Applied Microbiology and Biotechnology. 2016, 100 (21): 9381-9391. (10)钱飞跃,刘雨馨,王建芳*,刘文如.低温驯化对自养脱氮颗粒污泥功能活性与菌群结构的影响分析.环境科学, 2021, 42(7): 3422. 方向三:生态修复与碳足迹 (1)Feiyue Qian*; Cui Da; Chunchen Lu; Xinyu Gu; Junjian Yang; Chaowei Shi; Zhen Feng; Yuanyuan Cheng. Assessment of co-benefits from on-road vehicle electrification in Suzhou City, China. Urban Climate. 2024, 60: 102069. (2)Feiyue Qian*; Yan Zhu; Cui Da; Xinrui Zheng; Zhiming Liu; Chunchen Lu; Yuanyuan Cheng; Chuanming Yang. Deep decarbonization strategy for synergistic reduction of CO2and air pollutant emissions in metropolises: A case study of Suzhou, China. Energy for Sustainable Development. 2024, 83: 101575. (3)Feng Yan; Suqin Wang; Ziheng Huang; Yaru Liu; Lingli He;Feiyue Qian*; Microbial ecological responses of partial nitritation/anammox granular sludge to real water matrices and its potential application.Environmental Research.2023, 226:115701. (4)Xin Jin; Jing Jiang; Lei Zhang; Guangyu Shi; Xueyan Li; Longfei Zhang; Xuyu Chen;Feiyue Qian*. Analysis of bacterial community distribution characteristics in the downstream section of a cross confluence in a polluted urban channel.Environmental Science and Pollution Research. 2023, 30: 43677-43689. (5)Cui Da; Xinyu Gu; Chunchen Lu; Xinyue Chang; Yuanyuan Cheng;Feiyue Qian*; Greenhouse gas emission benefits of adopting new energy vehicles in Suzhou City, China: A case study. Environmental Science and Pollution Research. 2022, 29(50): 76286-7629. |