一、代表性论文: 2024年: 1. Zhang, C; Zhang, C. X.; Dawolo, H. E.; Chen, B. F.; Ding, N.; Liu, H*. Degradation mechanism of metronidazole using persulfate activated by boron/copper doped biochar derived from Chlorella vulgaris. Process Safety and Environmental Protection. 2024, 191, 1394-1406. 2. Tian, Y.X.; Luo, S. C.; Dawolo, H. E.; Chen, B. F.; Ding, N.; Liu, H*. Degradation mechanism and ecotoxicity analysis of levofloxacin by palladium-modified nano zero-valent iron doped coconut shell biochar. Journal of Environmental Chemical Engineering. 2024, 12, 5, ,114150. 3. Hu, L.; Shi, L.; Dawolo, E. H.; Ding, N.; Liu, H*. Cobalt-modified biochar from rape straw as persulfate activator for degradation of antibiotic metronidazole. Processes. 2024, 12, 1596. 4. Huang, Z. C.; Ni, J.; Ding, N.; Liu, H*. CuS/Bi2O3 composites activating PMS under visible light for efficient degradation of antibiotic tetracycline. Environmental Science and Pollution Research. 2024, 31(6):9135-9149. 5. Zhang, D. Y.; Shi, L.; Dawolo, E. H.; Chen, B. F; Ding, N.; Liu, H. Synthesis of Fe-loaded biochar obtained from rape straw for enhanced degradation of emerging contaminant antibiotic metronidazole. Water. 2024, 16, 1822. 6. Chen, B. F.; Gu, X. C.; Feng, M. H.; Feng, Y. F.; Wang, B. Y.; You, B. S.; Zheng, J. C.; Liu, H*.; Han, S. Q*. Hydrothermal temperature-dependent compositions and copper complexing behaviors of hydrochar-derived dissolved organic matter: Insights from FT-ICR MS and multi-spectroscopic analysis. Journal of Environmental Sciences. 2024, 152, 685-700. 7. Zhang, K.; Ye, S. Q; Liu, H. Degradation of aniline and antimony in printing and dyeing wastewater by micro-oxygenated hydrolytic acidification and their removal effects on chemical oxygen demand and ammonia nitrogen. Water. 2024, 16, 2436. 2023年: 1. Ma, J. J; Ding, N; Liu, H*. Research progress in photocatalytic activated persulfate degradation of antibiotics by bismuth-based photocatalysts. Separation and Purification Technology. 2023, 324, 124628. 2. Tian, Y.X; Chen X; Ding N; Liu, H*. Removal of BTEX from water system by synergistic flocculation of biosurfactant and iron salt. Science of The Total Environment. 2023, 892, 164371. 3. Ding, N; Li, Z.W; Jiang, L; Liu, H; Zhang, Y.P; Sun, Y.X. Kinetics and mechanisms of bacteria disinfection by performic acid in wastewater: In comparison with peracetic acid and sodium hypochlorite. Science of The Total Environment. 2023. 878, 162606. 4. Luo, S.C.; Pang, Z.Z.; Ding, N.; Liu, H*. Enhanced photocatalytic degradation of antibiotic levofloxacin by Ag3PO4/C3N4/ZnO nanocomposite. Research on Chemical Intermediates. 2023, Volume OnlineFirst. 5. Zhang, C.X.; Ni, J.; Ding, N.; Liu, H*. Visible-light-assisted PMS Activation by Heterojunction Photocatalyst MgIn2S4/Bi2O3 for Tetracycline Degradation. Catalysis Communication. 2023, 183. 6. 庞族族, 丁宁, 刘宏*. 银基光催化剂W-Ag3PO4的制备及其可见光降解抗生素左氧氟沙星. 中国环境科学. 2023. 43 (9): 4606-4615. 7. 顾鑫才,陈丙法,刘宏*. 改良生物炭吸附/降解水中有机污染物研究进展.江苏农业学报. 2023, 39( 3) : 873-880. 2022年: 1. Liu, H*; Zhang, P; Chen, H. W; Ding, N; Ni, J. Study on the Degradation Mechanism of 2-Amino-4-Acetaminoanisole from Wastewater by Nano-Fe3O4 Catalyzed Heterogeneous Fenton System. Environmental Science and Pollution Research. 2022, 29 (24): 35811-35827. 2. Liu, H*; Nkundabose, J.P; Chen, H. W; Chen M; Ding, N. Decontamination of Ibuprofen Micropollutants from Water Based on Visible-light-responsive Hybrid Photocatalyst. Journal of Environmental Chemical Engineering. 2022, (10):107154. 3. Ding, N; Jiang, L; Wang, X; Wang C; Geng Y; Zhang J.X; Sun, Y.X; Zhang Y.P; Yuan, Q; Liu, H. Polyethylene microplastic exposure and concurrent effect with Aeromonas hydrophila infection on zebrafish. Environmental Science and Pollution Research. 2022, 29, 63964–63972. 4. 刘宏*, 陈猛, 张鹏, 杨留留, 陈厚望, 王利刚. 响应面优化氧化锌催化超声降解十二烷基苯磺酸钠. 工业水处理. 2022, 008, 042. 5. 刘宏*, 倪静, 叶仕青. 金属锑对活性污泥法去除印染废水中COD和氨氮的影响研究. 工业水处理. 2022, 42(78), 88-94. 2021年: 1. Gomez-Alvarez, V.; Liu, H.; Pressman, J.; Wahman, D. Metagenomic profile of microbial communities in a drinking water storage tank sediment after sequential exposure to monochloramine, free chlorine, and monochloramine. ASC EST Water. 2021, 1(5):1283-1294. 2. Liu, H*; Yang L.L; Chen, H.W; Chen, M; Zhang, P; Ding, N. Preparation of floating BiOCl0.6I0.4/ZnO photocatalyst and its inactivation of Microcystis aeruginosa under visible light. Journal of Environmental Science. 2021, 125, 362-375. 3. Ding, N; Wang, X; Jiang, L; Zhang, J.X; Geng, Y; Dong, L.M; Liu, H. Enhancement of sludge dewaterability by a magnetic field combined with coagulation/flocculation: a comparative study on municipal and citric acid–processing waste-activated sludge. Environmental Science and Pollution Research. 2021, 28, 35728-35737. 4. 张鹏; 刘宏*; 陈厚望; 叶仕青; 陈猛; 杨留留. 响应曲面法优化树脂吸附2-氨基-4-乙酰氨基苯甲醚. 工业水处理. 2021,41(6). 5. 陈厚望; 刘宏*; 张鹏; 杨留留; 陈猛. Ag3PO4/AgI光催化剂的制备及降解2-氨基-4-乙酰氨基苯甲醚机理. 化工进展. 2021,40(8). 6. 杨留留;刘宏*;陈厚望;陈猛;张鹏。漂浮型BiOCl0.6I0.4/GO 光催化剂的制备及其除藻性能. 中国环境科学. 2021,41(10). 2020年: 1. Liu, X.; Liu, H*.; Ding, N. Chloramine disinfection-induced nitrification activities and their potential public health risk indications within deposits of a drinking water supply system. Int. J. Environ. Res. Public Health. 2020, 17(3), 772. 2. Ding, N.; Peng C.; and Liu, H. Improving dewaterbility and other properties of citric acid wastewater treatment sludge by ozone and peroxone. Ozone: Science and Engineering. 2020, 42(1):3-12. 3. Liu, H*.; Liu, X.; Ding, N. An innovative in situ monitoring of sulfate reduction within a wastewater biofilm by H2S and SO42- microsensors. Int. J. Environ. Res. Public Health. 2020, 17(6), 2023. 4. Ding, N.; Peng C.; and Liu, H. et al. Improving dewaterbility and other properties of citric acid wastewater treatment sludge by ozone and peroxone. Ozone: Science and Engineering. 2020, 42(1):3-12. 2019年: 1. Liu, H.; Wahman, D.; Pressman, J. Penetration and activity of monochloramine in sediment from drinking water storage tank. Environmental Science and Technology. 2019, 53(16): 9352-9360. 2. Liu, X.; Chen, H.W.; Ding, N.; Liu, H*. Assessment of PCB-contaminated soil pretreatment remediation by Hydroxypropyl-β-cyclodextrin (HP-β-CD). 2019. 46(1): 53-61. Archives of Environmental Protection. 2009年-2018年: 1. Ding, N.; Peng C.; Ren, Y. X; Liu, Y.; Wang, P.; Dong, L.M.; Liu, H.; Wang, D. Improving the dewaterability of citric acid wastewater sludge by fenton treatment. Journal of Cleaner Production. 2018, 196:739-746. 2. Liu, H.; Tan, S.; Yu, T.; Liu, Y. Sulfate reducing bacterial community and in situ activity in mature fine tailings analyzed by real time qPCR and microsensor. Journal of Environmental Sciences. 2016, 44(6):141-147. 3. Liu, H.; Tan, S.; Sheng, Z.; Yu, T.; Liu, Y. Impact of oxygen on the co-existence of nitrification, denitrification, and sulfate reduction in oxygen based membrane aerated biofilm. Canadian Journal of Microbiology. 2015, 61(3): 237-242. 4. Liu, H.; Yu, T.; Liu, Y. The presence, activity and community characteristics of sulfate reducing bacteria in oil sands process-affected wastewater biofilm by microsensors and qPCR. Science of the Total Environment. 2015, 536:116-122. 5. Liu, H.; Tan, S.; Sheng, Z.; Liu, Y.; Yu, T. Bacterial community structure and activity of sulfate reducing bacteria in a membrane aerated biofilm analyzed by microsensor and molecular techniques. Biotechnology and Bioengineering. 2014, 111(11): 2155-2162. 6. Sharma, K.; Liu, H.; Lau, BLT.; Li, J.; Yu, T.; Liu, Y. Biological fixed film systems I. Water Environment Research. 2009, 81(10): 1194-1216. 7. Josyula, K; Liu, H.; Liang, J.M; Lerner, R; Sheng, Z.Y; Liu, Y. Biofilm fixed film systems II. Water Environment Research.2009, 82(10): 1124-1158. 二、教材编写 1. 《水质与水处理公共供水技术手册》 (第五版),美国自来水厂协会.刘文君;施周.中国建筑工业出版社. 2008. 2. 《环境微生物学》(英文版), “十三五”规划教材,李大鹏、李勇编著. 中国石化出版社. 参编第2、3、4章. 2020. 3. 《环境科学与工程英语》, “十三五”江苏省高等学校重点教材, 杨金才等编著. 外语教学与研究出版社. 2020. |