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Ma Hua, PhD
Associate Professor
Deputy Director of Environmental Engineering Program
Office: 308 at Environment Hall
Email: water_mh@126.com; hma@cqu.edu.cn
Education
● 2007 – 2010: PhD in Municipal Engineering, Harbin Institute of Technology, Harbin, China.
● 2005 – 2007: M.S. in Municipal Engineering, Harbin Institute of Technology, Harbin, China.
● 2001 – 2005: B.E. in Water Supply and Drainage Engineering, Harbin Institute of Technology, Harbin, China.
Research Description
Dr. Hua Ma’s research interests include: freshwater ecology; environmental microbiology; the biodegradation and photochemical behavior of organic matters in environment; biotechnology; systems analysis of ecology and environment.
Publications(选填)
l Ma, H*., Zheng, Y., Xian, J., Feng, Z., Li, Z., Cui, F. A light-enhanced α-FeOOH nanowires/polyaniline anode for improved electricity generation performance in microbial fuel cells. Chemosphere. 2022. 296, 133994
l Li, Z., Xie, Y., Zeng, Y., Zhang, Z., Song, Y., Hong, Z., Ma, L., He, M., Ma, H*., Cui, F. Plastic leachates lead to long-term toxicity in fungi and promote biodegradation of heterocyclic dye. Science of the Total Environment. 2022. 806, 150538.
l Xian, J., Ma, H*., Li, Z., Ding, C., Liu, Y., Yang, J., Cui, F. α-FeOOH nanowires loaded on carbon paper anodes improve the performance of microbial fuel cells. Chemosphere. 2021. 273. 129669
l Pan, Y., Ma, H*., Li, Z., Du, Y., Liu, Y., Yang, J., Li, G. Selective conversion of lignin model veratryl alcohol by photosynthetic pigment via photo-generated reactive oxygen species. Chemical Engineering Journal. 2020. 393. 124772
l Du, Y., Ma, H*., Huang, L., Pan, Y., Huang, J., Liu, Y. Electrochemical characteristics of the decolorization of three dyes by laccase mediator system (LMS) with synthetic and natural mediators. Chemosphere. 2020. 239. 124779
l Liu, Y., Ma, H*., Huang, J., Li, Z., Pan, Y., Du, Y. Carbonaceous nanomaterials stimulate extracellular enzyme release by the fungus Cladosporium sp. and enhance extracellular electron transfer to facilitate lignin biodegradation. Science of the Total Environment. 2019. 696. 134072
l Pan, Y., Ma, H*., Huang, L., Huang, J., Liu, Y., Huang, Z., Li, W. Graphene enhanced transformation of lignin in laccase-ABTS system by accelerating electron transfer. Enzyme and Microbial Technology. 2018. 119: 17-23
l Ma, H*., Huang, L., Zhang, J., Shi, D., Yang, J. Optical properties of straw-derived dissolved organic matter and growth inhibition of Microcystic aeruginosa by straw-derived dissolved organic matter via photo-generated hydrogen peroxide. Environmental Pollution. 2018. 242: 760-768
l Rojas-Jimenez, K*., Fonvielle, J.A., Ma, H., Grossart, H.P. Transformation of humic substances by the freshwater Ascomycete Cladosporium sp. Limnology and Oceanography. 2017. 62: 1955-1962
● Ma, H*., Zhang, J., Tong, L., Yang, J. Photochemical production of hydrogen peroxide from natural algicide: Decomposition organic matters from straw. Environmental Science: Processes & Impacts. 2015. 17: 1455-1461
Projects, Patents, and Awards(选填)
● Regulation mechanisms of cyanobacteria growth and microcystic toxins content by reactive intermediates generated via photosensitization of autochthonous/allochthonous origin dissolved organic matters, National Science Foundation of China (NSFC), 2020-2023.
● Compound allelochemical mechanism of algal inhibition using straw decomposition products based on photosensitized reactions, National Science Foundation of China (NSFC), 2016-2018.