Guang-Hao Chen
Affiliations: | Civil Engineering | Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong |
Area:
Civil Engineering, Water Resource Management, Asian StudiesGoogle:
"Guang-Hao Chen"Children
Sign in to add traineeXiaohong Guan | grad student | 2005 | HKUST |
Liao Meng | grad student | 2012 | HKUST |
Hamish R. Mackey | grad student | 2014 | HKUST |
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Publications
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Jiang CK, Deng YF, Xu Z, et al. (2023) Sulphate reduction, mixed sulphide- and thiosulphate-driven Autotrophic denitrification, NItrification, and Anammox (SANIA) integrated process for sustainable wastewater treatment. Water Research. 247: 120824 |
Deng YF, Zan FX, Huang H, et al. (2022) Coupling sulfur-based denitrification with anammox for effective and stable nitrogen removal: A review. Water Research. 224: 119051 |
Sivasubramanian R, Chen GH, Mackey HR. (2021) The effectiveness of divalent cation addition for highly saline activated sludge cultures: Influence of monovalent/divalent ratio and specific cations. Chemosphere. 274: 129864 |
Deng YF, Wu D, Huang H, et al. (2021) Exploration and verification of the feasibility of sulfide-driven partial denitrification coupled with anammox for wastewater treatment. Water Research. 193: 116905 |
Li X, Hao T, Tang Y, et al. (2021) A “Seawater-in-Sludge” approach for capacitive biochar production via the alkaline and alkaline earth metals activation Frontiers of Environmental Science & Engineering in China. 15: 1-14 |
Qian J, Bai L, Zhang M, et al. (2020) Achieving rapid thiosulfate-driven denitrification (TDD) in a granular sludge system. Water Research. 190: 116716 |
Huang H, Ekama G, Deng YF, et al. (2020) Identifying the mechanisms of sludge reduction in the sulfidogenic oxic-settling anaerobic (SOSA) process: Side-stream sulfidogenesis-intensified sludge decay and mainstream extended aeration. Water Research. 189: 116608 |
Sivasubramanian R, Chen GH, Mackey HR. (2020) Shock effects of monovalent cationic salts on seawater cultivated granular sludge. Journal of Hazardous Materials. 403: 123646 |
Biswal BK, Wang B, Chen L, et al. (2020) Rational design of sulfidogenic granular sludge reactor with clostridia as dominant bacteria for energy-efficient sulfate-laden wastewater treatment. Bioresource Technology. 317: 124017 |
Siddiqui MA, Dai J, Luo Y, et al. (2020) Investigation of the short-term effects of extracellular polymeric substance accumulation with different backwashing strategies in an anaerobic self-forming dynamic membrane bioreactor. Water Research. 185: 116283 |