学术成果:
[1] Chen Le, Jinhua Wu*, Shubo Deng, Ping Li, Xiangde Wang, Nengwu Zhu, Pingxiao Wu. Effects of common dissolved anions on the reduction of para-chloronitrobenzene by zero-valent iron in groundwater. Water Science & Technology, 2011, 63(7): 1485-1490
[2] Chen Le, Jinhua Wu*, Ping Li, Xiangde Wang, Nengwu Zhu, Pingxiao Wu, Bo Yang. Decolorization of anthraquinone dye Reactive Blue 19 by the combination of persulfate and zero-valent iron. Water Science & Technology, 2011, 64(3): 754-759
[3] Chen Le, Junqian Liang, Jinhua Wu*, Ping Li, Xiangde Wang, Nengwu Zhu, Pingxiao Wu, Bo Yang. Effective degradation of para-chloronitrobenzene through a sequential treatment using zero-valent iron reduction and Fenton oxidation. Water Science & Technology, 2011, 64(10): 2126-2131
[4] 乐晨, 吴锦华*, 李平, 王向德, 杨波. 钙镁离子及重碳酸盐对零价铁还原对氯硝基苯的影响. 环境工程学报, 2011, 5(10): 2177-2180
[5] 乐晨, 吴锦华*, 李平, 王向德, 杨波. 零价铁还原地下水中对氯硝基苯的研究. 安全与环境学报, 2011, 11(4): 64-67
[6] 梁俊倩, 吴锦华*, 李平, 王向德. 柚子皮吸附活性艳蓝KN-R和活性艳橙X-GN性能研究. 水处理技术, 2011, 37(4): 99-102
[7] 査清云, 吴锦华*, 李平, 王向德, 杨波. 硝酸盐还原条件下对氯硝基苯的生物还原转化. 环境工程学报. 2012, 6(7): 2169-2172
[8] 梁俊倩, 吴锦华*, 李平, 王向德, 杨波. 零价铁与厌氧微生物协同还原地下水中的硝基苯. 环境工程学报. 2012, 6(8): 2512-22516
[9] Junqian Liang, Jinhua Wu*, Ping Li, Xiangde Wang, Bo Yang. Shaddock peel as a novel low-cost adsorbent for removal of methylene blue from dye wastewater. Desalination and Water Treatment, 2012, 39(1-3): 70-75
[10] Weizhao Yin, Jinhua Wu*, Ping Li, Xiangde Wang, Nengwu Zhu, Pingxiao Wu, Bo Yang. Experimental study of zero-valent iron induced nitrobenzene reduction in groundwater: The effects of pH, iron dosage, oxygen and common dissolved anions. Chemical Engineering Journal, 2012, 184(3): 198-204
[11] Weizhao Yin, Jinhua Wu*, Guanghui Lin, Ping Li, Xiangde Wang, Bin Zhu, Bo Yang. Reductive transformation of pentachloronitrobenzene by zero-valent iron and mixed anaerobic culture. Chemical Engineering Journal, 2012, 210(11): 309-315
[12] Jinhua Wu*, Guanghui Lin, Ping Li, Weizhao Yin, Xiangde Wang, Bo Yang. Heterogeneous Fenton like degradation of an azo dye reactive brilliant orange by the combination of activated carbon-FeOOH catalyst and H2O2. Water Science & Technology, 2013, 67(3): 572-578
[13] 林光辉, 吴锦华*, 李平, 王向德, 杨波. 零价铁与双氧水异相Fenton降解活性艳橙X-GN的研究. 环境工程学报, 2013, 7(3): 913-917
[14] Jinhua Wu*, Weizhao Yin, Jingjing Gu, Ping Li, Xiangde Wang, Bo Yang. A biotic Fe0-H2O system for nitrobenzene removal from groundwater. Chemical Engineering Journal, 2013, 226(15): 14-21
[15] Jinhua Wu*, Guocai Chen, Jingjing Gu, Weizhao Yin, Mengxiong Lu, Ping Li, Bo Yang. Effects of hydraulic retention time and nitrobenzene concentration on the performance of sequential upflow anaerobic filter and air lift reactors in treating nitrobenzene-containing wastewater. Environmental Science and Pollution Research, 2014, 21(22): 12800-12810
[16] 谷静静, 吴锦华*, 陈国才, 李平. 序批式气升环流反应器处理硝基苯废水. 环境工程学报, 2014, 8(7): 2795-2799
[17] Weizhao Yin, Jinhua Wu*, Weilin Huang, Chaohai Wei. Enhanced nitrobenzene removal and column longevity by coupled abiotic and biotic processes in zero-valent iron column. Chemical Engineering Journal, 2015, 259(1): 417-423[29] 于延伟, 吴锦华*, 李冬昱. 碳源及电子受体对厌氧微生物降解对氯硝基苯的影响. 环境保护科学, 2015, 41(1): 70-74[30] Zhonghang Ruan, Jinhua Wu, Jianfei Huang, Zuantao Lin, Yanfang Li, Yonglin Liu, Piaoyang Cao, Yueping Fang, Jun Xie, Gangbiao Jiang. Facile preparation of rosin-based biochar coated bentonite for supporting α-Fe2O3 nanoparticles and its application for Cr(VI) adsorption. Journal of Materials Chemistry A. 2015, 3: 4595-4603
[18] Weizhao Yin, Jinhuawu Wu*, Weilin Huang, Yongtao Li, Gangbiao Jiang. The effects of flow rate and concentration on nitrobenzene removal in abiotic and biotic zero-valent iron columns. Science of the Total Environment, 2016, 560-561: 12-18
[19] Dongyu Li, Jishu Zhu, Jinhua Wu*, Weizhao Yin, Hao Liang, Guanghui Lin. Development of an activated carbon-supported zero-valent iron catalyst (AC-Fe0) for enhancing degradation of reactive brilliant orange and reducing iron sludge production. Environmental Progress & Sustainable Energy, 2016, 35(4): 949-956
[20] Jianfei Huang, Yongtao Li, Jinhua Wu, Piaoyang Cao, Yonglin Liu Gangbiao Jiang. Floatable, macroporous structured alginate sphere supporting iron nanoparticles used for emergent Cr(VI) spill treatment. Carbohydrate Polymers, 2016, 146: 115-122
[21] Jianfei Huang, Yongtao Li, Jinhua Wu, Xianming Dong, Piaoyang Cao, Yonglin Liu, Zuantao Lin, Gangbiao Jiang. Facile preparation of amorphous iron nanoparticles filled alginate matrix composites with high stability. Composites Science and Technology, 2016, 134: 168-174
[22] 林影, 梁好, 刘传胜, 吴锦华*, 李平. 零价铁与过硫酸盐异相芬顿降解活性艳橙X-GN. 环境保护科学, 2016, 42(4): 110-114
[23] 吴锦华*, 钟家炜, 揭雪飞, 梁好, 刘传胜. 一步还原焙烧法制备炭载零价铁及其对水中Cr(VI)的去除. 环境工程学报, 2016, 10(10): 5347-5351
[24] 吴锦华, 谭雪云, 江燕斌, 盖恒军. 煤化工废水硫酸亚铁混凝预处理及可生化性提高研究. 广东化工, 2016, 43(23): 5-7
[25] Weizhao Yin, Yongtao Li, Jinhua Wu∗, Guocai Chen, Gangbiao Jiang, Ping Li, Jingjing Gu, Hao Liang, Chuansheng Liu. Enhanced Cr(VI) removal from groundwater by Fe0-H2O system with bio-amended iron corrosion. Journal of Hazardous Materials, 2017, 332: 42-50
[26] Jiawei Zhong, Weizhao Yin, Yongtao Li, Ping Li, Jinhua Wu*, Gangbiao Jiang, Jingjing Gu, Hao Liang. Column study of enhanced Cr(VI) removal and longevity by coupled abiotic and biotic processes using Fe0 and mixed anaerobic culture. Water Research, 2017, 122: 536-544
[27] 吴锦华, 方一莉, 江燕斌, 盖恒军, 李平. PAC 混凝法去除煤化工废水中难降解组分及其可生化性提高研究. 环境工程, 2017, 35(2): 15-18
[28] 陈国才, 梁好, 刘传胜, 谷静静, 吴锦华*, 李平. 不同电子供体和受体对零价铁与微生物协同还原六价铬的影响. 环境工程学报, 2017, 11(6): 3488-3492
[29]李 湛 江, 谭雪云, 吴锦华*, 江燕斌, 盖恒军. Fe0/S2O82-异相芬顿与生物组合工艺处理煤化工废水尾水. 环境工程学报, 2018, 12(3): 760-767
[30] Yili Fang, Weizhao Yin, Yanbin Jiang, Hengjun Ge, Ping Li, Jinhua Wu*. Depth treatment of coal-chemical engineering wastewater by a cost-effective sequential heterogeneous Fenton and biodegradation process. Environmental Science and Pollution Research, 2018, (25): 13118-13126
[31] Mei Su, Ping Li, Jinhua Wu*, et al. Enhanced hexavalent chromium removal by activated carbon modified with micro-sized goethite using a facile impregnation method. Science of the Total Environment, 2019, 647: 47-56
[32] Bing Li, Weizhao Yin, Jinhua Wu*, et al. Facile modification of activated carbon with highly dispersed nano-sized α-Fe2O3 for enhanced removal of hexavalent chromium from aqueous solutions. Chemosphere, 2019, 224: 220-227