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Habuer
Assistant Professor
,
Faculty of Environmental Science and Technology
Assistant Professor
,
Faculty of Engineering
Graduate School of Environmental and Life Science
Academic Field of Environmental and Life Science
Email
habuerokayama-u.acjp
97
Citations
Source: Scopus
4
h-Index
Calculated based on no. of publications stored in Pure and citations from Scopus
2011
2022
Research activity per year
Overview
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Network
Research output
(36)
Activities
(41)
Prizes
(1)
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Dive into the research topics where Habuer is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Weight
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Earth & Environmental Sciences
mercury
100%
electronic equipment
77%
atmospheric emission
50%
television
40%
scenario analysis
37%
resource availability
36%
convention
35%
time series analysis
33%
digestion
29%
additive
27%
resource utilization
24%
shell
23%
recycling
23%
methane
23%
time series
21%
reactor
21%
methanogenesis
20%
copper
19%
emission inventory
18%
coal-fired power plant
17%
carbon
17%
metal
17%
penetration
16%
resource
14%
transition
12%
barium
11%
hydrolysis
11%
durable goods
10%
cost
10%
assessment method
10%
impact assessment
10%
human health
10%
household
10%
sludge
9%
policy
8%
life cycle
8%
hydraulics
8%
environmental impact
7%
combustion residue
7%
decision
7%
agricultural waste
7%
waste incineration
6%
ecosystem
6%
energy
6%
economics
5%
Engineering & Materials Science
Methane
53%
Water
38%
Watersheds
38%
Time series analysis
37%
Minerals
31%
Rivers
30%
Recycling
30%
Contamination
29%
Electronic equipment
25%
Coal
25%
Carbon
23%
Availability
21%
International cooperation
20%
Hydrolysis
20%
Health
18%
Gases
17%
Copper
16%
Gold mines
15%
Television receivers
14%
Barium
14%
Air
14%
Environmental impact
13%
Life cycle
12%
Solid wastes
12%
Chemical oxygen demand
12%
pH
11%
Decision making
11%
Ecosystems
10%
Feedstocks
10%
Biogas
10%
Personal computers
9%
Planning
9%
Lead
9%
Hydraulics
9%
Gas emissions
8%
Greenhouse gases
8%
Agricultural wastes
8%
Costs
7%
Metals
6%
Economics
6%
Chemical Compounds
Flow Analysis
84%
Alkali
50%
Waste Incineration
47%
Flow
43%
Solid Waste
37%
Methane
37%
Mining
35%
Mineral
24%
pH Value
23%
Additive
20%
Carbon Atom
14%
Amount
13%
Retention Time
11%
Gas
10%
Reaction Yield
9%
Chemical Oxygen Demand
6%
Energy
5%