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The sorption of hydrogen sulfide from hot syngas by metal oxides over supports
Tzu Hsing Ko,
Hsin Chu
, Lung Kai Chaung
環境工程學系
研究成果
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引文 斯高帕斯(Scopus)
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Earth & Environmental Sciences
analysis
6%
breakthrough curve
28%
cerium
64%
copper
36%
effect
5%
experiment
10%
hydrogen sulfide
81%
loss
13%
manganese
69%
material
10%
metal
15%
metal oxide
89%
method
5%
product
12%
reactor
17%
rutile
28%
sorption
62%
sulfur
19%
surface area
39%
temperature
9%
vaporization
29%
X-ray diffraction
19%
zinc
41%
Medicine & Life Sciences
Cerium
83%
Hydrogen Sulfide
100%
Manganese
92%
Metals
66%
Oxides
92%
Powder Diffraction
39%
Statistics
19%
Sulfur
30%
Temperature
18%
titanium dioxide
33%
Volatilization
35%
Weights and Measures
16%
X-Ray Diffraction
30%
Zinc
49%
Engineering & Materials Science
Calcination
19%
Cerium
44%
Copper
24%
Experiments
5%
Hydrogen sulfide
96%
Impregnation
18%
Manganese
54%
Metals
49%
Oxides
65%
Sorbents
94%
Sorption
91%
Sulfur
14%
Temperature
6%
Vaporization
17%
X ray powder diffraction
23%
Zinc
33%
Chemical Compounds
Calcination
12%
Cerium
29%
Hydrogen Sulfide
80%
Metal
6%
Metal Oxide
63%
Powder X-Ray Diffraction
11%
Rutile
15%
Sorbent
66%
Sorption
53%
Surface Area
19%
Vaporization
15%
Weight
8%
Social Sciences
candidacy
58%
experiment
22%
performance
35%
utilization
30%