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Hui Ma
Ingen jobbeskrivelse VIP
,
Institut for Plante- og Miljøvidenskab
,
Miljøkemi
https://orcid.org/0000-0001-9773-1608
E-mail
huima
plen.ku
dk
Websted
https://plen.ku.dk/forskning/miljoekemi-og-fysik/
Thorvaldsensvej 40
1871
Frederiksberg C
2018
2019
Publikationer pr. år
Vis
Fingeraftryk
Netværk
Publikation
(5)
Lignende profiler
(6)
Fingeraftryk
Dyk ned i forskningsemnerne, hvor Hui Ma er aktive. Disse emneetiketter kommer fra dennes persons arbejder. Sammen danner de et unikt fingerprint.
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Alfabetisk
Teknik og materialevidenskab
Chitosan
100%
Adsorption
80%
Glucosamine
72%
Nuclear magnetic resonance
63%
Humic Substances
61%
Coprecipitation
53%
Isomers
52%
Cesium
50%
Bentonite
46%
Heavy metals
45%
Water
44%
Butenes
43%
Adsorbents
38%
Gold
38%
Wastewater
37%
Eutectics
37%
Condensation
35%
Oxidation
31%
Arginine
31%
Choline
30%
Catalysts
30%
Derivatives
29%
Photoluminescence
28%
Surface plasmon resonance
28%
Plasmonics
26%
Photocurrents
25%
Antibiotics
25%
Microspheres
23%
Catalysis
23%
Precious metals
23%
Charge transfer
22%
Bias voltage
22%
Amino acids
21%
Sulfides
20%
Dyes
20%
Sensors
18%
Electrons
17%
Kemiske forbindelser
D-Glucosamine
51%
Chitosan
51%
Photochemical Oxidation
50%
Spin Trapping
42%
Porosity
41%
Adsorption
40%
Pyrazine
39%
Humic Acid
37%
Arginine
35%
Charge Separation
35%
Butene
34%
Surface Plasmon Resonance
34%
Noble Metal
34%
Adsorbent
32%
Photocurrent
32%
Coprecipitation
30%
Microsphere
30%
Heavy Metal
29%
Bentonite
29%
Electron Spin
29%
Wastewater
28%
Hydrothermal Method
27%
Photoluminescence
27%
Toxic
26%
Voltage
25%
Antimicrobial Agent
24%
Charge Transfer
24%
Compound Isomer
24%
NMR Spectroscopy
23%
Choline Chloride
22%
Catalysis
22%
Dye
22%
Choline
19%
Solvent
16%
Reduction
16%
Radioactive Waste Management
16%
Application
15%
Time
15%
Radioactive Waste Disposal
15%
Amount
15%
Geo- og miljøvidenskab
adsorption
48%
cesium
41%
removal
37%
bentonite
36%
condensation
32%
catalyst
31%
in situ
27%
heavy metal
25%
water
21%
isotherm
18%
nanocomposite
17%
nuclear magnetic resonance
16%
amino acid
16%