一作或通讯期刊论文(划线为指导的研究生或本科生) (1) Chen Ling, Xiaohan Chen, Jing Yang, Xinhua Zhan, Jason C. White, Melanie Kah, Yu Shen*, Baoshan Xing*. Multi-Scale Plant Defense Strategies Against Ciprofloxacin Stress: From Chloroplast-Centered Adaptation to Microbiome Coordination, Research, 2026, Doi 10.34133/research.1082. (2) Chen Ling, Zhiyong Zhang, Tailu Dong, Changqing Zhu*, Yuzhu Xue, Jiangang Han, Fuqiang Liu*. Constructing low-temperature-resistant advanced oxidation process by hollow porous carbon-supported single-atom Fe catalyst for efficient cold-water decontamination: Combined kinetic and thermodynamic optimization, Applied Catalysis B: Environment and Energy 372 (2025) 125330 (IF=21.1) 2025.9 (3) Chen Ling, Yixuan Song, Yuxiao Zhu, Ran Hong,* Tailu Dong, Jiangang Han, and Yiping Feng*. Highly Efficient Adsorption of Sulfamethoxazole and Ciprofloxacin by a Novel Bowl-Shaped Nitrogen-Doped Pyrolytic Carbon and the Underlying Structural-Property Mechanism. ACS ES&T Water, 2025, 5, 2, 871-880. (IF=4.9) (4) Chen Xiaohan, Chen Jieyu, Zhang Yanhong, Chen Ling*, Shen Yu*. Biochar Nanoparticles Reduce Ciprofloxacin Accumulation and Restore Growth and Hormonal Balance in Rice Seedlings. Plants-Basel, 2025, 14, 380. (IF=4) (5) Chen Xiaohan, Song Yixuan, Chen Ling * Shen Yu*, Zhan Xinhua, Xing Baoshan*. Fate of emerging antibiotics in soil-plant systems: A case on fluoroquinolones. Journal of The Total Environment, 2024, 175487. (IF=8.2) (6) Xue Yuzhu, Wang Weinan, Zhang Yanhong, Fan Qinhua, Zhang Ying, Chen Ling *, Pan Yuwei*. Boron/Fe2+/H2O2 combined with resins process cost-effectively remove Ni (II) in wastewater containing Ni-EDTA: Performance and mechanism. Journal of Environmental Chemical Engineering, 2024, 114112. (IF=7.4) (7) Dong Tailu, Chen Ling *, Fu Lichun, Xue Yuzhu, Pan Yuwei, Zhang Ying, Zhu Changqing*. N-doped porous bowl-like carbon with superhigh external surface area for ultrafast degradation of bisphenol A: Key role of site exposure degree. Journal of Hazardous Materials, 2023, 445, 130562. (IF=13.6) 202303 (8) Chen Ling, Wang Zhengxiao, Song Yixuan, Fu Lichun, Zhang Yanhong*, Wang Weinan, Xing Weinan, Han Jiangang*. Molecular mechanisms of pyrophosphate-mediated selective adsorption of Ni(II) by polyamine-grafted chitosan-wood flour composite from alkaline plating wastewater: EXAFS investigation and theoretical calculations. Applied Surface Science, 2023, 632, 157591. (IF=6.7) 202309 (9) Chen Ling, Shuai Wu, Jiangang Han, Tailu Dong, Changqing Zhu, Xiuwen Li, Lijie Xu, Ying Zhang*, Minghua Zhou*, Yuwei Pan*. Sulfide-Modified Zero-Valent Iron Activated Periodate for Sulfadiazine Removal: Performance and Dominant Routine of Reactive Species Production. Water Research, 2022, 220, 118676-118676. (IF=11.236) 202207 (10) Chen Ling,Shuai Wu, Tailu Dong, Haifan Dong, Zhengxiao Wang, Yuwei Pan*, Jiangang Han*. Sulfadiazine removal by peroxymonosulfate activation with sulfide-modified microscale zero-valent iron: Major radicals, the role of sulfur species, and particle size effect. Journal of Hazardous Materials, 2022, 423, 127082. (IF=10.588) 202202 (11) Yingzhi Lv, Lidan Zong, Zicheng Liu, Jianwei Du, Fenghe Wang, Yanhong Zhang, Chen Ling*, Fuqiang Liu*. Sequential separation of Cu(II)/Ni(II)/Fe(II) from strong-acidic pickling wastewater with a two-stage process based on a bi-pyridine chelating resin, Chinese Chemical Letters 32 (2021) 2792–2796. (IF=8.455) (12) Chen Ling , Zixi Ren, MengMeng Wei, Fei Tong, Yuwei Cheng, Xiaopeng Zhang, Fu-Qiang Liu*. Highly selective removal of Ni(II) from plating rinsing wastewaters containing [Ni-xNH3-yP2O7]n complexes using N-chelating resins. Journal of Hazardous Materials, 2020, 398, 122960. (IF=9.038) 202011 (13) Chen Ling, Cailiang Yue, Ranran Yuan, Jinli Qiu, Fu-Qiang Liu*, Jun-Jie Zhu*, Enhanced removal of sulfamethoxazole by a novel composite of TiO2 nanocrystals in situ wrapped-Bi2O4 microrods under simulated solar irradiation, Chemical Engineering Journal, 384 (2020) 123278. (IF=10.652) (14) Chen Ling, Zhao Yixuan, Ren Zixi, Han Jiangang, Zhu Changqing, Liu Fu-Qiang*. Synergistic co-removal of zinc(II) and cefazolin by a Fe/amine-modified chitosan composite. Chinese Chemical Letters, 2019, 30(12): 2196-2200. (IF=4.632) (15) Huan Qiu, Chen Ling*, Cailiang Yue, Fuqiang Liu*, Aimin Li. Site bridging enhanced the coadsorption of copper and sulfamethoxazole by a polyamine chelating resin, Chemical Engineering Journal, 2019, 362, 422–429. (IF=8.355) (16) Chen Ling, Cailiang Yue, Fuqiang Liu*, Mengmeng Wei, Taipeng Chen, Junjie Zhu*. Contrastive study for coadsorption of copper and two dihydroxybenzene isomers by a multi-amine modified resin, Journal of Hazardous Materials, 2018, 352: 47–56. (IF=6.434) (17) Chen Ling, Xiaoyun Li, Zhiyun Zhang, Fuqiang Liu*, Yingqing Deng, Xiaopeng Zhang, Aimin Li, Lili He, Baoshan Xing*. High adsorption of sulfamethoxazole by an amine-modified polystyrene-Pinylbenzene resin and its mechanistic insight. Environmental Science & Technology, 2016, 50, 10015-10023. (IF=6.198) (18) Chen Ling, Fuqiang Liu*, Zhiguo Pei, Xiaopeng Zhang, Mengmeng Wei, Yanhong Zhang, Lirong Zheng, Jing Zhang, Aimin Li, Baoshan Xing. Citric acid enhanced copper removal by a novel multi-amines decorated resin. Scientific Reports, 2015, 5: 1-12. (IF=5.228) (19) Chen Ling, Fuqiang Liu*, Chao Long, Tai-Peng Chen, Qiu-Yuan Wu, Ai-Min Li. Synergic removal and sequential recovery of acid black 1 and copper (II) with hyper-crosslinked resin and inside mechanisms. Chemical Engineering Journal, 2014, 236(0): 323-331. (IF=4.321) (20) Chen Ling, Fu-Qiang Liu*, Chao Long, Meng-Meng Wei, Aimin Li. Highly efficient co-removal of copper (II) and phthalic acid with self-synthesized polyamine resin. Water Science and Technology, 2014, 69, 1879-1885. (IF=1.106) (21) Chen Ling, Fuqiang Liu*, Chao Xu, Tai-Peng Chen, Ai-Min Li. An integrative technique based on synergistic coremoval and sequential recovery of copper and tetracycline with dual-functional chelating resin: roles of amine and carboxyl groups. ACS Applied Materials & Interfaces, 2013, 5(22): 11808-11817. (IF=5.9) 专利: (1) 凌晨;张志永;梁英等;一种高盐废水中深度除氟的方法,2024.12.13,CN202411271750.2(授权) (2) 凌晨;王伟楠;梁英等,一种利用Fe-C/PMS催化耦合螯合吸附处理电镀废水中NTA-重金属络合物的方法,2024.10.15,CN202410367677.2(授权) (3) 凌晨;王正晓;王伟楠等,一种高强度多胺颗粒及其制备方法和应用,2022.09.06,ZL202111230012.X(授权) (4) 凌晨;潘玉伟;吴帅等,一种去除水体中有机污染物的方法,2023.02.28,ZL202210434085.9(授权) (5) 凌晨;任梓溪;陈瑜炜等,一种氨磷双络合电镀废水中重金属达标处理的方法,2022.10.28,ZL201911284925.2(授权) (6) 凌晨;苏菲安;韩建刚等,一种用于吸附重金属离子的羧基碳球的制备方法及其产品,2022.03.25,ZL201911098517.8(授权) (7) 凌晨;董太路;朱长青等,超高活性位点暴露率的氮掺杂多孔碗状碳催化剂的制备及应用,2023.03.24,ZL202211450857.4(授权) (8) 凌晨;董太路;张艳红等;一种耐低温氮自掺杂中空碳球负载铁催化剂的制备及应用,2022.11.15,ZL202210878148.X(授权) |