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胡振
教授
性别:男
在职信息:在职
所在单位:环境科学与工程学院
入职时间: 2013-09-16
所属院系: 环境科学与工程学院
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[1] 岳婧媛. Organic matter-driven hydroxyl radical generation enhances emerging pollutant removal in plant rhizosphere of constructed wetlands: Coupled direct and indirect effects. Water Research , 287, 2025.
[2] . Nitrogen Recovery via Aquaponics-Bioponics: Engineering Considerations and Perspectives. ACS ES&T ENGINEERING, 1, 326-339, 2021.
[3] Jie Wang. Elimination of sulfamethoxazole in constructed wetlands with different electrochemical stimulations: Synergistic mechanisms and transformation pathways. JOURNAL OF HAZARDOUS MATERIALS ADVANCES, 139810, 2025.
[4] Peihan Yu. Low-carbon nitrogen removal from actual landfill leachate by heterotrophic-autotrophic coupled biological treatment system and its functional mechanisms. JOURNAL OF CLEANER PRODUCTION, 146610, 2025.
[5] Xu, Peipei. Exploring the role of phosphorus in the clogging formation of subsurface flow constructed wetland by two-dimensional visualization technique. Journal of Water Process Engineering, 65, 2024.
[6] Zhao, Yanhui. Revealing the size effect mechanisms of micro(nano)plastics on nitrogen removal performance of constructed wetland. JOURNAL OF HAZARDOUS MATERIALS, 480, 2024.
[7] Zhang, Xinyi. Current research hotspots and frontier trends on carbon budget of coastal wetlands: A bibliometric analysis. Water Science and Technology, 89, 3104-3121, 2024.
[8] Han, Ke. Nitrogen and nitrous oxides emission characteristics of anoxic/oxic wastewater treatment process under different oxygen regulation strategies. Science of The Total Environment , 919, 2024.
[9] Wang, Yuechang. Optimization and action mechanism of pollutant removal performance of unsaturated vertical flow constructed wetland (UVFCW) driven by substained-release carbon source. PeerJ, 13, 2025.
[10] 傅成锴. 人工湿地堵塞形成机制、作用效能及其防治技术研究进展. 环境工程, 43, 178-190, 2025.
[11] Yu, Peihan. A novel evaluation index system for comprehensively analyzing the operational performance of constructed wetlands. JOURNAL OF WATER PROCESS ENGINEERING, 72, 2025.
[12] 姜慧琪. A2O污水生物处理过程中DOM对N2O生成的影响. Zhongguo Huanjing Kexue/China Environmental Science, 45, 1869-1877, 2025.
[13] 胡浩东. 磺胺嘧啶对鱼菜共生系统氮元素转化的影响. Zhongguo Huanjing Kexue/China Environmental Science, 41, 1697-1703, 2021.
[14] Jin, Fenglin. Impact of clogging on accumulation and stability of phosphorus in the subsurface flow constructed wetland. Chemosphere, 313, 2023.
[15] Xinyi Zhang. Effect of salinity on carbon sequestration in constructed wetlands and its functional mechanisms. Bioresource technology, 2023.
[16] Wang, Shuo. Formation of phosphine and its effect on phosphorus retention in constructed wetlands: Characteristic and mechanism. ENVIRONMENTAL TECHNOLOGY & INNOVATION, 28, 2022.
[17] Yang, Mengxue. Versatile pathways for oxidating organics via peroxymonosulfate activation by different single atom catalysts confining with Fe–N4 or Cu–N4 sites. Chemical Engineering Journal, 451, 2023.
[18] 王洁. 轻质填料在人工湿地中的研究现状与应用展望. 环境科学与技术, 46, 154-161, 2023.
[19] Shang, Zhenxin. Enhanced phosphorus removal of constructed wetland modified with novel Lanthanum-ammonia-modified hydrothermal biochar: Performance and mechanism. Chemical Engineering Journal, 449, 2022.
[20] Zhao, Qian. Comparison study on enhancement of phosphorus recovery from low-strength wastewater treated with different magnesium-based electrochemical constructed wetland. JOURNAL OF ENVIRONMENTAL MANAGEMENT , 345, 2023.
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