Dr. Hai Yu
CSIRO Energy Flagship, Australia
Email: [email protected]
Qualifications
2004 Ph.D., The University of Newcastle, Australia, Chemical Engineering
1996 M.S., Dalian University of Technology, China, Chemical Engineering
1993 B.S., Wuhan Institute of Chemical Technologies, China, Chemical Engineering
Research Fields
CO2 capture and
utilization
Gas cleaning
technologies
Treatment of
greenhouse gases
Publications (Selected)
-
Wang C, Jiang K, Yu H, et al. Review of
electrochemical carbon dioxide capture towards practical application[J]. Next
Materials, 2025, 8: 100660.
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Pan W, Yuan J, Wang P, et al. Efficient
ultra-low voltage electrolysis of CO2 coupling with hydrazine oxidation
degradation[J]. Applied Catalysis B: Environment and Energy, 2024, 351: 124011.
-
Li K, Chen J, Li S, et al. Tuning CO 2
reaction enthalpy via metal complexes for advanced amine technology[J]. Green
Chemistry, 2024, 26(4): 2269-2279.
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Xu Y, Yang Q, Seeber A, et al. The
impact of novel diamine based aqueous and water lean solvents on the corrosion
of carbon steel[J]. Corrosion Science, 2023, 210: 110816.
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Xu Y, Yang Q, Puxty G, et al.
Diffusivity in novel diamine-based water-lean absorbent systems for CO2 capture
applications[J]. Industrial & Engineering Chemistry Research, 2022, 61(34):
12493-12503.
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Zheng X, Liu J, Wei Y, et al.
Glycine-Mediated Leaching-Mineralization Cycle for Co2 Sequestration and
Vaterite Production from Coal Fly Ash: Dual Functions of Glycine as a Proton
Donor and Receptor[J]. Available at SSRN 4003128.
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Xiao X, Yang L, Sun W, et al.
Electrocatalytic water splitting: from harsh and mild conditions to natural
seawater[J]. Small, 2022, 18(11): 2105830.
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Xu Y, Wang T, Yang Q, et al. CO2
absorption performance in advanced water-lean diamine solvents[J]. Chemical
Engineering Journal, 2021, 425: 131410.
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Xu Y, Fang M, Yang Q, et al. Diamine
based water‐lean CO2 solvent with extra high cyclic capacity and low
viscosity[J]. Greenhouse Gases: Science and Technology, 2021, 11(5): 828-836.
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Li L, Puxty G, Maeder M, et al. Kinetic
absorption of CO2 into blended ammonia (NH3) solutions with a new cyclic amine
4-aminomethyltetrahydropyran (4-AMTHP)[J]. Energy & Fuels, 2019, 33(6):
5377-5383.
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Yu B, Li K, Ji L, et al. Coupling a
diamine-based absorption with fly ash triggered amine regeneration: an
integrated carbon capture and mineralisation process with high efficiency and
low energy consumption[C]//14th Greenhouse Gas Control Technologies Conference
Melbourne. 2018: 21-26.
Personal Details
https://people.csiro.au/Y/H/Hai-Yu
https://www.researchgate.net/profile/Hai-Yu-10