Mark- och miljövetenskap
ultrafiltration
100%
drinking water
88%
membrane
82%
water distribution system
65%
organic matter
61%
drinking water treatment
60%
fiber
57%
biofilm
54%
coagulation
49%
removal
47%
surface water
46%
flow cytometry
39%
water treatment plant
38%
water treatment
36%
absorbance
36%
water quality
31%
waterworks
25%
dissolved organic carbon
23%
humic substance
23%
cell
22%
cost-benefit analysis
22%
pipe
22%
fluorescence
22%
lake water
21%
water
20%
esthetics
19%
evaluation
18%
biogas
18%
digestion
18%
municipal solid waste
18%
trace metal
18%
bacterium
17%
sensor
16%
raw water
15%
monitoring
15%
sludge
14%
food
13%
climate change
13%
index
12%
liquid chromatography
12%
fouling
11%
pathogen
11%
disinfection
11%
regrowth
11%
risk assessment
9%
organic carbon
9%
nitrifying bacterium
8%
water hardness
8%
distribution system
8%
total organic carbon
7%
Ingenjörs- och materialvetenskap
Biological materials
86%
Potable water
81%
Ultrafiltration
65%
Nanofiltration
60%
Organic carbon
58%
Biofilms
51%
Water distribution systems
51%
Water treatment
50%
Municipal solid waste
50%
Fibers
43%
Membranes
42%
Water treatment plants
37%
Surface waters
36%
Coagulation
30%
Food waste
29%
Chemical cleaning
29%
Water quality
28%
Fluorescence
27%
Water
25%
Biogas
22%
Bacteria
21%
Adsorption
18%
Numerical methods
16%
Nanofiltration membranes
14%
Pipe
14%
Flow cytometry
12%
Humic Substances
12%
Disinfection
12%
Metals
12%
Wastewater treatment
12%
Lakes
11%
Water hardness
11%
Pilot plants
11%
Spectrophotometers
11%
Monitoring
10%
Substrates
10%
Sensors
9%
Fouling
9%
Organic compounds
8%
Cleaning
8%
Trace elements
8%
Genes
7%
Adhesion
7%
Methane
7%
Liquid chromatography
7%
Byproducts
6%
Time series
6%
Fluxes
6%
Spectroscopic analysis
6%
Carbon
5%
Medicin och livsvetenskap
Drinking Water
78%
Water
73%
Water Purification
64%
Ultrafiltration
45%
Water Quality
43%
Carbon
42%
Membranes
40%
Lakes
37%
Waste Water
24%
Sewage
24%
Humic Substances
22%
Biofilms
21%
Fluorescence
18%
Flow Cytometry
17%
Cost-Benefit Analysis
16%
Coagulants
15%
Bacteria
14%
Microbiota
14%
Esthetics
13%
Cell Count
12%
16S Ribosomal RNA
10%
Hardness
10%
Population Growth
9%
Sweden
9%
Liquid Chromatography
8%
Risk Assessment
8%
Hyphomicrobium
7%
Carbon Cycle
7%
Molecular Weight
6%
Ecology
6%
Nucleic Acids
6%
Water Supply
6%
Temperature
6%
Norovirus
6%
Campylobacter
6%
Sphingomonas
6%
polyether sulfone
5%
Hydrodynamics
5%
Quality-Adjusted Life Years
5%
Risk Management
5%