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Melanie Lee
Melanie Lee
Research Associate, Imperial College London
Verified email at imperial.ac.uk
Title
Cited by
Cited by
Year
Micro-structured alumina hollow fibre membranes–Potential applications in wastewater treatment
M Lee, Z Wu, R Wang, K Li
Journal of Membrane Science 461, 39-48, 2014
882014
Formation of micro-channels in ceramic membranes–Spatial structure, simulation, and potential use in water treatment
M Lee, B Wang, Z Wu, K Li
Journal of Membrane Science 483, 1-14, 2015
722015
New designs of ceramic hollow fibres toward broadened applications
M Lee, B Wang, K Li
Journal of membrane science 503, 48-58, 2016
682016
Development of low mass-transfer-resistance fluorinated TiO2-SiO2/PVDF composite hollow fiber membrane used for biogas upgrading in gas-liquid membrane contactor
Y Xu, Y Lin, M Lee, C Malde, R Wang
Journal of membrane science 552, 253-264, 2018
672018
Advances in ceramic membranes for water treatment
M Lee, Z Wu, K Li
Advances in membrane technologies for water treatment, 43-82, 2015
672015
Micro-structured alumina multi-channel capillary tubes and monoliths
M Lee, Z Wu, B Wang, K Li
Journal of Membrane Science 489, 64-72, 2015
362015
A metal–organic framework/α-alumina composite with a novel geometry for enhanced adsorptive separation
C Wang, M Lee, X Liu, B Wang, JP Chen, K Li
Chemical communications 52 (57), 8869-8872, 2016
352016
1.12 microstructured ceramic hollow fiber membranes and their applications
M Lee, K Li, E Drioli, L Giorno, E Fontananova
Comprehensive membrane science and engineering, 298-329, 2017
122017
YSZ-reinforced alumina multi-channel capillary membranes for micro-filtration
B Wang, M Lee, K Li
Membranes 6 (1), 5, 2015
92015
High-capacity open bore membrane chromatography column based on micro-packed ceramic hollow fibres
M Lee, B Wang, K Li
Journal of Membrane Science 524, 73-78, 2017
52017
Micro-channel enhanced alumina membranes: designing and tailoring their properties for widened applications
M Lee
Imperial College London, 2016
22016
A metal–organic framework/a-alumina composite with a novel geometry for enhanced adsorptive separation1
C Wang, M Lee, X Liu, B Wang, JP Chenbc, K Li
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Articles 1–12