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Comprehensive approach to determining the physical properties of granular activated carbons
Yu Chun Chiang, Pen Chi Chiang, E. E. Chang
臺北醫學大學
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引文 斯高帕斯(Scopus)
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Engineering & Materials Science
Activated carbon
77%
Adsorption
61%
Adsorption isotherms
44%
Argon
17%
Bituminous coal
20%
Composite materials
9%
Factor analysis
17%
Helium
17%
Hysteresis loops
19%
Nitrogen
29%
Peat
22%
Physical properties
56%
Pore size
18%
Earth & Environmental Sciences
activated carbon
58%
adsorption
42%
argon
11%
bituminous coal
11%
energy
5%
factor analysis
10%
helium
11%
hysteresis
10%
isotherm
17%
macropore
12%
mercury
17%
method
2%
nitrogen
12%
peat
9%
physical property
49%
shell
8%
Chemical Compounds
Adsorption
30%
Adsorption Isotherm
35%
Bituminous Coal
28%
Composite Material
10%
Energy
9%
Hysteresis
20%
Nitrogen
25%
Peat
27%
Physical Adsorption
23%
Pore
27%
Pore Size Distribution
21%
Volume
12%
Social Sciences
coal
67%
energy
43%
factor analysis
49%
hysteresis
100%
Medicine & Life Sciences
Adsorption
69%
Argon
13%
Carbon
62%
Coal
28%
Cocos
16%
Helium
14%
Mercury
23%
Nitrogen
20%
Statistical Factor Analysis
9%