1. 李红艳, 何勇,龙北生,等.一种玉米淀粉废水中回收高纯度颗粒鸟粪石装置及方法: 中国, ZL 2024 1 0725073.0. 发明专利. 2024.9.10. 2. 李红艳, 何勇,刘鹤,等.一种深度处理低碳氮比废水同步脱氮除磷的装置: 中国, ZL 2024 1 0786415.X. 发明专利. 2024.9.6. 3. 龙北生, 李红艳,乔劲松,等.改进型A2NSBR双泥反硝化除磷工艺方法: 中国, ZL 2022 1 1204863.1. 发明专利. 2024.5.10. 4. 李红艳, 刘鹤,何勇,等.生物除磷系统的泥水分离装置: 中国, 2023 2 1834864.4. 实用新型专利. 2024. 1.9. 5. 龙北生, 李红艳,康华,等.短程硝化的分段进水SBR工艺玉米淀粉废水脱氮方法: 中国, ZL 2019 1 0316234.X. 发明专利. 2021.7.23. 6. 李红艳, 张琬巍,李宁,等.一种无动力河岸景观湿地水质净化系统: 中国, ZL 2018 2 2211079.9. 实用新型专利. 2019.8.16. 7. 李红艳, 蒋维卿,龙北生,等.一种无扰动柱状沉积物采集器: 中国, ZL 2016 1 0737721.X. 发明专利. 2019.3.1. 8. 李红艳, 康华,刘红波,等.一种智能型专用于研究湿地生态净化功能的实验槽: 中国, ZL 2017 2 1233563.0. 实用新型专利. 2018.4.17. 9. 李红艳, 高瑞,杨雅丽,等.一种利用生物质炭吸附水中有机物的装置: 中国, ZL 2017 2 1057541.3. 实用新型专利. 2018.3.16. 10.李红艳, 张文华,孙大群,等.一种水样采集过滤装置: 中国, ZL 2017 2 0667115.5. 实用新型专利. 2017.12.15.
学术专著
1. 李红艳. 水环境中PAHs(菲)生物降解菌的筛选及降解特性的试验研究. 吉林: 吉林大学出版社; 2018.
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1. Hongyan Li, Jiaxi Peng, Yang Jiao, et al. Experiencing Urban Green and Blue Spaces in Urban Wetlands as a Nature-Based Solution to Promote Positive Emotions. Forests, 2022,13(3), 473. 2. Hongyan Li, Xuege Wang, Hongxu Wei, et al. Geographical Distribution and Driving Meteorological Forces of Facial Expressions of Visitors in Urban Wetland Parks in Eastern China. Frontiers in Earth Science, 2022,13(3), 473. 3. Hongyan Li, Lei Bai, Beisheng Long, et al. Comparative analysis of the phosphorus removal characteristics between two-stage and single-stage SBR processes for phosphorus and nitrogen removal. Desalination and Water Treatment, 2020, 181:197-203. 4. LI HongYan, ZHANG GuangXin, et al. Chemical Kinetic Characteristics of Phosphorus Migration in Aqueous Background of Wetland, Polish Journal of Environmental Studie, 2017, 26(3):665-670. 5. LI Hongyan, ZHANG Guangxin,SONG Dingfeng,et al. Studies on the Chemical Kinetics in Migration of organophosphorus in Clay with different pH, Acta Geologica Sinica (English Edition), 2013,87(4):1162-1167. 6. LI HongYan, ZHANG GuangXin, et al. Simulation and evaluation of the water purification function of Zhalong Wetland based on a combined water quantity-quality model, SCIENCE CHINA: Technological Sciences, 2012, 55(7): 1973-1981.
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