教授

黄国城

日期:2023-04-06 发布人:黄国城 浏览量:

黄国城,男,博士,福建省“闽江学者”特聘教授,研究员。致力于研究水体消毒技术、污染控制新技术及资源化利用、环境光催化等。在Water Research,等期刊发表SCI论文50余篇。担任国际SCI期刊Journal of Environmental Quality 副主编, 引文2700余次, h-index 为28。


邮箱:sysuhgc@gmail.com; huanggch@fzu.edu.cn


研究生课程


环境工程学原理;本科生课程:新能源技术,材料制备方法


研究方向


水体消毒技术、污染控制新技术及资源化利用、环境光催化等。主要招收硕士研究生方向:环境工程(学术型及专业型硕士)、环境科学(学术型硕士)、资源循环科学与工程(学术型硕士)。欢迎报考。


教育经历


08/2012-08/2015 博士 香港中文大学 环境科学

09/2010-07/2012 硕士 中山大学 环境工程

09/2006-07/2010 学士 中山大学 环境工程


工作经历


09/2015-02/2017 香港中文大学,博士后研究助理

03/2017-03/2019 中山大学,国际交流博士后

03/2019-11/2019 香港中文大学,博士后研究助理

09/2020-08/2022 福州大学,旗山学者

09/2022-现在 福州大学,闽江学者特聘教授


科研项目


1.福州大学闽江学者特聘教授科研项目 2022-2025 主持

2.福州大学"旗山学者"启动基金 2020-2022,主持

3.国家自然科学基金委员会(青年基金)2017-2020, 主持

4.福建省自然科学基金面上项目,2022-2025,主持

5.中国博士后科学基金会面上项目,2017-2019,主持

6.中国博士后国际交流项目,2017-2019,主持


发表论文


1. Yang Rong, Chen Qiaoshan, Huang Guocheng*, Bi Jinhong* (2023) Interfacial engineering of novel inorganic-organic β-Ga2O3/COF heterojunction for accelerated charge transfer towards artificial photosynthesis, Environmental Research, 216, 114541.

2. Deng, Shiyun; Li, Zhenzhen; Zhao, Tiansu; Huang, Guocheng*; Wang, Jianchun and Bi, Jinhong* (2022) Direct Z-scheme covalent triazine-based framework/Bi2WO6 heterostructure for efficient photocatalytic degradation of tetracycline: Kinetics, mechanism and toxicity. Journal of Water Process Engineering 49, 103021.

3. Chow, Alex TatShing*; Ulus, Yener; Huang, Guocheng; Kline, Michael Alan and Cheah, WingYee (2022) Challenges in Quantifying and Characterizing Dissolved Organic CarbonSampling, Isolation, Storage, and Analysis. Journal of Environmental Quality. https://doi.org/10.1002/jeq2.20392

4. Yu, Yuanyuan; Zhou, Zhongbo*; Huang, Guocheng; Cheng, Hong; Han, Le; Zhao, Shanshan; Chen, Yucheng and Meng, Fangang (2022) Purifying water with silver nanoparticles (AgNPs)-incorporated membranes: Recent advancements and critical challenges. Water Research 222, 118901.

5. Tian, Jinjin; Zhang, Jinpeng; Xu, Bin; Chen, Qiaoshan; Huang, Guocheng* and Bi, Jinhong* (2022) An Artificial Photosystem of MetalInsulatorCTF Nanoarchitectures for Highly Efficient and Selective CO2 Conversion to CO. Chemsuschem. https://doi.org/10.1002/cssc.202201107

6. Niu, Qing; Dong, Shaofeng; Tian, Jinjin; Huang, Guocheng*; Bi, Jinhong* and Wu, Ling (2022) Rational Design of Novel COF/MOF S-Scheme Heterojunction Photocatalyst for Boosting CO2 Reduction at Gas–Solid Interface. ACS Applied Materials & Interfaces 14(21), 24299-24308.

7. Huang, Guocheng; Niu, Qing; Zhang, Jiangwei; Huang, Huimin; Chen, Qiaoshan; Bi, Jinhong* and Wu, Ling (2022) Platinum single-atoms anchored covalent triazine framework for efficient photoreduction of CO2 to CH4. Chemical Engineering Journal 427, 131018.

8. Huang, Guocheng; Niu, Qing; He, Yuxin; Tian, Jinjin; Gao, Mingbin*; Li, Chaoyang; An, Ning; Bi, Jinhong* and Zhang, Jiangwei* (2022) Spatial confinement of copper single atoms into covalent triazine-based frameworks for highly efficient and selective photocatalytic CO2 reduction. Nano Research 15, (9), 8001-8009.

9. Huang, Guocheng; Lin, Guiyun; Niu, Qing; Bi, Jinhong* and Wu, Ling (2022) Covalent triazine-based frameworks confining cobalt single atoms for photocatalytic CO2 reduction and hydrogen production. Journal of Materials Science & Technology 116, 41-49.

10. Gao, Yanxin; Tan, Zunkun; Yang, Rong; Huang, Guocheng and Bi, Jinhong* (2022) Integrating Polyarylether-COFs with TiO2 nanofibers for Enhanced Visible-Light-Driven CO2 Reduction in Artificial Photosynthesis. Applied Surface Science, 154605.

11. Dong, Shaofeng; Tan, Zunkun; Chen, Qiaoshan*; Huang, Guocheng; Wu, Ling and Bi, Jinhong* (2022) Cobalt quantum dots as electron collectors in ultra-narrow bandgap dioxin linked covalent organic frameworks for boosting photocatalytic solar-to-fuel conversion. Journal of Colloid and Interface Science, 628, 573-582.

12. Chen, Yueling; Huang, Guocheng; Gao, Yanxin; Chen, Qiaoshan* and Bi, Jinhong* (2022) Up-conversion fluorescent carbon quantum dots decorated covalent triazine frameworks as efficient metal-free photocatalyst for hydrogen evolution. International Journal of Hydrogen Energy 47, (14), 8739-8748.

13. Zhao, Tiansu; Niu, Qing; Huang, Guocheng*; Chen, Qiaoshan; Gao, Yanxin; Bi, Jinhong* and Wu, Ling (2021) Rational construction of Ni (OH)2 nanoparticles on covalent triazine-based framework for artificial CO2 reduction. Journal of Colloid and Interface Science 602, 23-31.

14. Tan, Zunkun; Zhang, Peng; Chen, Qiaoshan*; Fang, Shengqiong; Huang, Guocheng; Bi, Jinhong* and Wu, Ling (2021) Visible-light-driven photocatalyst based upon metal-free covalent triazine-based frameworks for enhanced hydrogen production. Catalysis Science & Technology 11, (5), 1874-1880.

15. Niu, Qing; Cheng, Zhi; Chen, Qiaoshan; Huang, Guocheng*; Lin, Jiuyang; Bi, Jinhong* and Wu, Ling (2021) Constructing nitrogen self-doped covalent triazine-based frameworks for visible-light-driven photocatalytic conversion of CO2 into CH4. ACS Sustainable Chemistry & Engineering 9, (3), 1333-1340.

16. Zhao, Nan; Yang, Xixiang; Huang, Guocheng; Lv, Yizhong*; Jing, Zhang; Fan, Yuanyuan; Craig F, Drury and Yang, Xueming* (2021) Chemical and spectroscopic characteristics of humic acid from a clay loam soil in Ontario after 52 years of consistent fertilization and crop rotation. Pedosphere 31, (1), 204-213.

17. Lin, Guiyun; Sun, Long; Huang, Guocheng; Chen, Qiaoshan; Fang, Shengqiong*; Bi, Jinhong* and Wu, Ling (2021) Direct Z-scheme copper cobaltite/covalent triazine-based framework heterojunction for efficient photocatalytic CO2 reduction under visible light. Sustainable Energy & Fuels 5, (3), 732-739.

18. Gao, Shengjie; Zhang, Peng; Huang, Guocheng; Chen, Qiaoshan*; Bi, Jinhong* and Wu, Ling (2021) Band Gap Tuning of Covalent TriazineBased Frameworks through Iron Doping for VisibleLightDriven Photocatalytic Hydrogen Evolution. Chemsuschem 14, (18), 3850-3857.

19. Qiu, Haibo; Fang, Shengqiong*; Huang, Guocheng* and Bi, Jinhong (2020) A novel application of In2S3 for visible-light-driven photocatalytic inactivation of bacteria: Kinetics, stability, toxicity and mechanism. Environmental Research 190, 110018.

20. Huang, Guocheng; Xiao, Zhengtao; Zhen, Weiqian; Fan, Yaxin; Zeng, Cuiping; Li, Chuanhao; Liu, Shengwei* and Wong, Po Keung* (2020) Hydrogen production from natural organic matter via cascading oxic-anoxic photocatalytic processes: An energy recovering water purification technology. Water Research 175, 115684.

21. Huang, Guocheng; Ng, Tsz-Wai; Chen, Huan; Chow, Alex T*; Liu, Shengwei* and Wong, Po Keung* (2020) Formation of assimilable organic carbon (AOC) during drinking water disinfection: A microbiological prospect of disinfection byproducts. Environment International 135, 105389.

22. Huang, Guocheng; Liu, Xueyan; Shi, Shuangru; Li, Sitan; Xiao, Zhengtao; Zhen, Weiqian; Liu, Shengwei* and Wong, Po Keung* (2020) Hydrogen producing water treatment through mesoporous TiO2 nanofibers with oriented nanocrystals. Chinese Journal of Catalysis 41, (1), 50-61.

23. Yu, Zhong; Zhou, Zhongbo; Huang, Guocheng; Zheng, Xing; Wu, Linjie; Zhao, Shanshan and Meng, Fangang* (2018) Two-dimensional FTIR spectroscopic characterization of functional groups of NaOCl-exposed alginate: insights into membrane refouling after online chemical cleaning. ACS Applied Bio Materials 1, (3), 593-603.

24. Liu, Xueyan; Ye, Meng; Zhang, Shuping; Huang, Guocheng; Li, Chuanhao*; Yu, Jiaguo; Wong, Po Keung and Liu, Shengwei* (2018) Enhanced photocatalytic CO2 valorization over TiO2 hollow microspheres by synergetic surface tailoring and Au decoration. Journal of Materials Chemistry A 6, (47), 24245-24255.

25. Li, Sitan; Shi, Shuangru; Huang, Guocheng; Xiong, Ya and Liu, Shengwei* (2018) Synergetic tuning charge dynamics and potentials of Ag3PO4 photocatalysts with boosting activity and stability by facile in-situ fluorination. Applied Surface Science 455, 1137-1149.

26. Zhou, Zhongbo; Huang, Guocheng; Xiong, Yi; Zhou, Minghao; Zhang, Shaoqing; Tang, Chuyang Y and Meng, Fangang* (2017) Unveiling the susceptibility of functional groups of poly (ether sulfone)/polyvinylpyrrolidone membranes to NaOCl: a two-dimensional correlation spectroscopic study. Environmental Science & Technology 51, (24), 14342-14351.

27. Xia, Dehua; Li, Yan; Huang, Guocheng; Yin, Ran; An, Taicheng*; Li, Guiying; Zhao, Huijun; Lu, Anhuai and Wong, Po Keung* (2017) Activation of persulfates by natural magnetic pyrrhotite for water disinfection: Efficiency, mechanisms, and stability. Water Research 112, 236-247.

28. Peng, Xingxing; Ng, Tsz Wai; Huang, Guocheng; Wang, Wanjun; An, Taicheng* and Wong, Po Keung* (2017) Bacterial disinfection in a sunlight/visible-light-driven photocatalytic reactor by recyclable natural magnetic sphalerite. Chemosphere 166, 521-527.

29. Huang, Guocheng; Ng, Tsz Wai; An, Taicheng*; Li, Guiying; Xia, Dehua; Yip, Ho Yin; Zhao, Huijun and Wong, Po Keung* (2017) Probing the intracellular organic matters released from the photocatalytic inactivation of bacteria using fractionation procedure and excitation-emission-matrix fluorescence. Water Research 110, 270-280.

30. Huang, Guocheng; Ng, Tsz Wai; An, Taicheng*; Li, Guiying; Wang, Bo; Wu, Dan; Yip, Ho Yin; Zhao, Huijun and Wong, Po Keung* (2017) Interaction between bacterial cell membranes and nano-TiO2 revealed by two-dimensional FTIR correlation spectroscopy using bacterial ghost as a model cell envelope. Water Research 118, 104-113.

31. Ye, Liqun; Chu, Ka Him; Wang, Bo; Wu, Dan; Xie, Haiquan; Huang, Guocheng; Yip, Ho Yin and Wong, Po Keung* (2016) Noble-metal loading reverses temperature dependent photocatalytic hydrogen generation in methanol–water solutions. Chemical Communications 52, (78), 11657-11660.

32. Wu, Dan; Wang, Wei; Ng, Tsz Wai; Huang, Guocheng; Xia, Dehua; Yip, Ho Yin; Lee, Hung Kay; Li, Guiying; An, Taicheng* and Wong, Po Keung* (2016) Visible-light-driven photocatalytic bacterial inactivation and the mechanism of zinc oxysulfide under LED light irradiation. Journal of Materials Chemistry A 4, (3), 1052-1059.

33. Ng, Tsz Wai; Zhang, Lisha; Liu, Jianshe; Huang, Guocheng; Wang, Wei* and Wong, Po Keung* (2016) Visible-light-driven photocatalytic inactivation of Escherichia coli by magnetic Fe2O3–AgBr. Water Research 90, 111-118.

34. Dang, Hao; Liao, Yong; Ng, Tsz Wai; Huang, Guocheng; Xiong, Shangchao; Xiao, Xin; Yang, Shijian* and Wong, Po Keung* (2016) The simultaneous centralized control of elemental mercury emission and deep desulfurization from the flue gas using magnetic Mn–Fe spinel as a co-benefit of the wet electrostatic precipitator. Fuel Processing Technology 142, 345-351.

35. Chu, Ka Him (#); Huang, Guocheng (#); An, Taicheng; Li, Guiying; Yip, Pui Ling; Ng, Tsz Wai; Yip, Ho Yin; Zhao, Huijun and Wong, Po Keung* (2016) Photocatalytic inactivation of Escherichia coli—The roles of genes in β-oxidation of fatty acid degradation. Catalysis Today 266, 219-225. (#co-first author)

36. Xia, Dehua(#); Shen, Zhurui(#); Huang, Guocheng; Wang, Wanjun; Yu, Jimmy C* and Wong, Po Keung* (2015) Red phosphorus: an earth-abundant elemental photocatalyst for “green” bacterial inactivation under visible light. Environmental Science & Technology 49, (10), 6264-6273.

37. Xia, Dehua; Li, Yan; Huang, Guocheng; Fong, Chi Ching; An, Taicheng*; Li, Guiying; Yip, Ho Yin; Zhao, Hunjun; Lu, Anhuai and Wong, Po Keung* (2015) Visible-light-driven inactivation of Escherichia coli K-12 over thermal treated natural pyrrhotite. Applied Catalysis B: Environmental 176, 749-756.

38. Wang, Wanjun; Huang, Guocheng; Jimmy, C Yu and Wong, Po Keung* (2015) Advances in photocatalytic disinfection of bacteria: development of photocatalysts and mechanisms. Journal of Environmental Sciences 34, 232-247.

39. Shi, Huixian; Huang, Guocheng; Xia, Dehua; Ng, Tsz Wai; Yip, Ho Yin; Li, Guiying; An, Taicheng*; Zhao, Huijun and Wong, PoKeung* (2015) Role of in situ resultant H2O2 in the visible-light-driven photocatalytic inactivation of E. coli using natural sphalerite: a genetic study. The Journal of Physical Chemistry B 119, (7), 3104-3111.

40. Ng, Tsz Wai; Huang, Guocheng and Wong, Po Keung* (2015) Investigation of drinking water bacterial community through high-throughput sequencing. J. Environ. Sci 37, 154-156.

41. Lee, Kwan Yin; Ng, Tsz Wai; Li, Guiying; An, Taicheng*; Kwan, Ka Ki; Chan, King Ming; Huang, Guocheng; Yip, Ho Yin and Wong, Po Keung* (2015) Simultaneous nutrient removal, optimised CO2 mitigation and biofuel feedstock production by Chlorogonium sp. grown in secondary treated non-sterile saline sewage effluent. Journal of Hazardous Materials 297, 241-250.

42. Huang, Guocheng; Xia, Dehua; An, Taicheng*; Ng, Tsz Wai; Yip, Ho Yin; Li, Guiying; Zhao, Huijun and Wong, Po Keung* (2015) Dual roles of capsular extracellular polymeric substances in photocatalytic inactivation of Escherichia coli: comparison of E. coli BW25113 and isogenic mutants. Applied and Environmental Microbiology 81, (15), 5174-5183.

43. Yang, Xiaofang; Meng, Fangang*; Huang, Guocheng; Sun, Li and Lin, Zheng (2014) Sunlight-induced changes in chromophores and fluorophores of wastewater-derived organic matter in receiving waters–the role of salinity. Water Research 62, 281-292.

44. Liu, Shengwei; Huang, Guocheng; Yu, Jiaguo*; Ng, Tsz Wai; Yip, Ho Yin and Wong, Po Keung* (2014) Porous fluorinated SnO2 hollow nanospheres: transformative self-assembly and photocatalytic inactivation of bacteria. ACS Applied Materials & Interfaces 6, (4), 2407-2414.

45. Meng, Fangang*; Huang, Guocheng; Yang, Xin; Li, Zengquan; Li, Jian; Cao, Jing; Wang, Zhigang and Sun, Li (2013) Identifying the sources and fate of anthropogenically impacted dissolved organic matter (DOM) in urbanized rivers. Water Research 47, (14), 5027-5039.

46. Zhou, Zhongbo; Meng, Fangang*; Liang, Shuang; Ni, Bing-Jie; Jia, Xiaoshan; Li, Shiyu; Song, Yankai and Huang, Guocheng (2012) Role of microorganism growth phase in the accumulation and characteristics of biomacromolecules (BMM) in a membrane bioreactor. RSC Advances 2, (2), 453-460.

47. Zhou, Zhongbo; Meng, Fangang*; Chae, So-Ryong; Huang, Guocheng; Fu, Wenjie; Jia, Xiaoshan; Li, Shiyu and Chen, Guang-Hao (2012) Microbial transformation of biomacromolecules in a membrane bioreactor: implications for membrane fouling investigation. PLoS ONE 7(8): e42270.

48. Meng, Fangang*; Huang, Guocheng; Li, Zengquan and Li, Shiyu (2012) Microbial transformation of structural and functional makeup of human-impacted riverine dissolved organic matter. Industrial & Engineering Chemistry Research 51, (17), 6212-6218.

49. Meng, Fangang*; Zhou, Zhongbo; Ni, Bing-Jie; Zheng, Xing; Huang, Guocheng; Jia, Xiaoshan; Li, Shiyu; Xiong, Ya and Kraume, Matthias (2011) Characterization of the size-fractionated biomacromolecules: tracking their role and fate in a membrane bioreactor. Water Research 45, (15), 4661-4671.

50. Huang, Guocheng; Meng, Fangang*; Zheng, Xing; Wang, Yuan; Wang, Zhigang; Liu, Huijun and Jekel, Martin (2011) Biodegradation behavior of natural organic matter (NOM) in a biological aerated filter (BAF) as a pretreatment for ultrafiltration (UF) of river water. Applied Microbiology and Biotechnology 90, (5), 1795-1803.


上一条:林春香

下一条:潘文斌

微信公众号

   © 2021 福州大学环境与安全工程学院    闽ICP备05005463号-1