[1]王亚军主编.水文及水文地质学.北京:化学工业出版社,2013年02月,ISBN 978-7-122-16320-2. [2]王亚军主编.水文及水文地质学(第二版)(“十四五”普通高等教育省级规划教材).北京:化学工业出版社,2025年06月,ISBN 978-7-122-47950-1. [3]王亚军副主编.建筑设备(高等学校土建类专业规划规划教材).北京:化学工业出版社,2010年08月,ISBN 978-7-122-08487-3. [4]王亚军主编.给排水科学与工程专业毕业设计图集及常见问题分析.中国建筑工业出版社,2023年,ISBN 978-7-112-28258-6. [5]王亚军主编.污水深度处理与回用(“十四五”普通高等教育省级规划教材建设项目).中国建筑工业出版社,2026年. 代表论文(发表期刊论文100多篇,其中SCI收录40余篇): [1]王亚军*,朱琨.腐殖酸对铬在砂质土壤中吸附行为的影响研究[J].安全与环境学报,2007, 7(5):42-47. [2]王亚军*,马军.水体环境中天然有机质腐殖酸研究进展[J].生态环境学报, 2012, 21(6): 1155-1165. [3]王亚军*,张弘,韦昆.雨水花园过滤系统的渗透性能试验研究[J].东南大学学报(自然科学版),2016,46(6):1308-1312. (EI收录) [4]王亚军*.生态过滤系统中多级混合颗粒群渗流过程分析与完善[J].水土保持通报,2017, 37(3):329-333.(高质量科技期刊T1) [5]Yajun Wang*. Nitrogen RemovalPerformanceof Microbial Fuel Cell Enhanced Bioretention System [J].The Journal of Water Supply: Research and Technology-AQUA,2019, 68(8):769-781. (IF2021=1.644) [6]Yajun Wang*. Carbon-to-NitrogenRatioInfluence on the Performance of Bioretention for Wastewater treatment [J].Environmental Science and Pollution Research,2020, 27(15):17652-17660. (IF2021= 4.223) [7]王亚军*,耿冲冲,许妍等.不同强化手段对生物滞留池脱氮除磷性能的影响[J].中国给水排水,2020, 36(19):77-82.(高质量科技期刊T1) [8]王亚军*,司运美.群体感应在生物强化功能菌定殖及其降解能力增强中的作用研究进展[J].应用生态学报,2022, 33(10) : 2871-2880.(高质量科技期刊T1) [9]王亚军*,司运美.除磷菌CP-7的筛选及其降解特性研究[J].生物技术通报,2022, 38(7):258-268.(EI收录) [10]Wang Yajun*, Geng Chongchong, Chen Tianjing, Li Jinshou, Xu Yan, Fu Dafang. Adaptability of enhanced bioretention cell for nitrogen and phosphorus removal under two antibiotics stress [J].Ecotoxicology and Environmental Safety,2022, 230: 113114. (SCI收录,TOP期刊)(IF2022=7.129) [11]Yajun Wang*, Yanchao Xu, Siyong Zhang, et al. Effects of powdered activated carbon dosage on the performance of membrane bioreactors treating biochemical tail water[J].Science of the Total Environment,2023, 874: 162429. (SCI收录,TOP期刊) (IF2022=10.753) [12]王亚军*,秦楚桐,李肇隆等.好氧颗粒污泥结构稳定强化策略研究评述[J].生态环境学报,2024,33(3): 478-486.(高质量科技期刊T2) [13]Yajun Wang*,Tianjing Chen, Cong Zhang et al. Enhanced performance of bioretention cell via plants for removal of tetracycline: The effect of plants and analysis of microbes[J].Journal of Water Process Engineering,2024, 65: 105778.(IF2024=6.245) [14]TZhu,S Li,C Tao,W Chen,M Chen,Z Zong,Y Wang, et al. Understanding the mechanism of microplastic-associated antibiotic resistance genes in aquatic ecosystems: Insights from metagenomic analyses and machine learning[J].Water Research,2025, 268.DOI:10.1016/j.watres.2024.122570. (SCI收录,TOP期刊) (IF2025=12.40) [15]王亚军*,徐衍超,张四永等.曝气协同粉末活性炭调控MBR运行[J].中国给水排水,2024, 40(17):71-78.(高质量科技期刊T1) [16]王亚军*,宋广翰,徐衍超等.曝气量调控协同外加PAC对MBR的碳排放优化[J].中国给水排水,2025, 41(13):40-48.(高质量科技期刊T1) [17]Tian, L., Jin, L., Chen, M., Fu, D., Zheng, S., &Wang, Y., et al. Highly selective copper recovery from industrial wastewater via electric field-enhanced ultrafiltration assisted with a picolyl-modified polyelectrolyte[J].Water Research,2025, 274.DOI10.1016/j.watres.2025.123090.(SCI收录,TOP期刊) (IF2025=12.40) [18]Yajun Wang*, Zhaolong Li, Lijuan Cai., etal.Optimal design and characterization of activated carbon-modified micron zero-valent iron for Sb(Ⅱ)removal from aqueous solution[J].Materials Science and Engineering B,2025, 322. 118664.(IF2025=4.6) [19]Xinning Jiang, Fangjiao An, Shuyin Li, Cuicui Tao, Yi Li, Tengyi Zhu,Yajun Wang*. Leveraging machine learning to predict DBPs formation and identify its critical determinants in drinking water treatment[J].Journal of Environmental Chemical Engineering, 2026, 14(2): 121649.(IF2025=7.2) [20]Yihua Zhao,Yajun Wang*, Chutong Qin, Zhaolong Li, Xue Dong. Enhancement of Wastewater Treatment Performance in SBRs via Bioaugmentation with ONP-3 Microbial Agents[J].Water Air and Soil Pollution, 2026, 237(5): 322.(IF2025=3.4) |