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Fuel processing technology (source)
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1
journal article EST
/
journal article ENG
Changes in trace element contents in ashes of oil shale fueled PF and CFB boilers during operation
Reinik, Janek
;
Irha, Natalya
;
Steinnes, Eiliv
;
Urb, Gary
;
Jefimova, Jekaterina
;
Piirisalu, Eero
;
Loosaar, Jüri
Fuel Processing Technology
2013
/
p. 174 - 181
https://doi.org/10.1016/j.fuproc.2013.06.001
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
journal article EST
/
journal article ENG
2
journal article EST
/
journal article ENG
Experimental analysis of the combustion characteristics of Estonian oil shale in air and oxy-fuel atmospheres
Loo, Lauri
;
Maaten, Birgit
;
Siirde, Andres
;
Pihu, Tõnu
;
Konist, Alar
Fuel processing technology
2015
/
p. 317-324 : ill
https://doi.org/10.1016/j.fuproc.2014.12.051
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
journal article EST
/
journal article ENG
3
journal article
Mathematic models for kinetics of batchwise hydrogenation of shale oil
Johannes, Ille
;
Luik, Hans
;
Kruusement, Kristjan
Fuel processing technology
2006
/
8, p. 711-716 : ill
journal article
4
journal article
Modeling calcium dissolution from oil shale ash. Part 1, Ca dissolution during ash washing in a batch reactor
Velts, Olga
;
Hautaniemi, Marjaana
;
Kallas, Juha
;
Kuusik, Rein, keemik
Fuel processing technology
2010
/
5, p. 486-490 : ill
https://www.sciencedirect.com/science/article/abs/pii/S0378382009003567
journal article
5
journal article
Modeling calcium dissolution from oil shale ash. Part 2, Continuous washing of the ash layer
Velts, Olga
;
Hautaniemi, Marjaana
;
Kallas, Juha
;
Kuosa, Markku
;
Kuusik, Rein, keemik
Fuel processing technology
2010
/
5, p. 491-495 : ill
https://www.sciencedirect.com/science/article/pii/S0378382009003579
journal article
6
journal article EST
/
journal article ENG
Quantitative compositional analysis of Estonian shale oil using comprehensive two dimensional gas chromatography
Ristic, Nenad D.
;
Djokic, Marko R.
;
Konist, Alar
;
Van Geem, Kevin M.
;
Marin, Guy B.
Fuel processing technology
2017
/
p. 241-249 : ill
https://doi.org/10.1016/j.fuproc.2017.07.008
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
journal article EST
/
journal article ENG
7
journal article EST
/
journal article ENG
Thermodynamic and kinetic study of CaS in aqueous systems
Tamm, Kadriann
;
Uibu, Mai
;
Kallas, Juha
;
Kallaste, Priit
;
Velts-Jänes, Olga
;
Kuusik, Rein, keemik
Fuel processing technology
2016
/
p. 242-249 : ill
https://doi.org/10.1016/j.fuproc.2015.10.029
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
journal article EST
/
journal article ENG
8
journal article EST
/
journal article ENG
Upgrading of Estonian shale oil heavy residuum bituminous fraction by catalytic hydroconversion
Luik, Hans
;
Luik, Lea
;
Johannes, Ille
;
Tiikma, Laine
;
Vink, Natalia
;
Palu, Vilja
;
Bitjukov, Mihhail
;
Tamvelius, Hindrek
;
Krasulina, Julia
;
Kruusement, Kristjan
;
Nechaev, Igor
Fuel processing technology
2014
/
p. 115-122 : ill
https://doi.org/10.1016/j.fuproc.2014.02.018
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
journal article EST
/
journal article ENG
9
journal article
Utilization of Estonian oil shale semicoke
Trikkel, Andres
;
Kuusik, Rein, keemik
;
Martins, Ants
;
Pihu, Tõnu
;
Stencel, John M.
Fuel processing technology
2008
/
p. 756-763 : ill
journal article
10
journal article EST
/
journal article ENG
Utilization of oil shale combustion wastes for PCC production : quantifying the kinetics of Ca(OH)
2
and CaSO
4
·2H
2
O dissolution in aqueous systems
Uibu, Mai
;
Tamm, Kadriann
;
Velts-Jänes, Olga
;
Kallaste, Priit
;
Kuusik, Rein, keemik
;
Kallas, Juha
Fuel processing technology
2015
/
p. 156-164 : ill
https://doi.org/10.1016/j.fuproc.2015.09.010
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
journal article EST
/
journal article ENG
Number of records 10, displaying
1 - 10
keyword
150
1.
alkaline anion-exchange membrane fuel cell
2.
alkaline membrane fuel cell
3.
alternative fuel
4.
ammonia as marine fuel
5.
anion exchange membrane fuel cell
6.
ca-rich fuel
7.
fossil fuel
8.
fossil fuel power plants
9.
fuel
10.
Fuel air explosive weapons (FAEs)
11.
fuel ash
12.
fuel cell
13.
fuel cell power systems
14.
fuel cells
15.
fuel cells (FCs)
16.
fuel components
17.
fuel consumption
18.
fuel conversion
19.
fuel economy
20.
fuel efficiency
21.
Fuel electrode
22.
fuel inorganic part
23.
fuel market
24.
fuel oils
25.
fuel poverty
26.
fuel prices
27.
fuel saving
28.
fuel savings
29.
fuel taxes
30.
fuel VAT
31.
fuel-cost characteristics
32.
high temperature fuel cells
33.
high-velocity air-fuel (HVAF) spraying
34.
icebreaker fuel consumption
35.
liquid fuel
36.
marine fuel insetting
37.
microbial fuel cell
38.
microbial fuel cells
39.
motor fuel
40.
motor fuel (gasoline and diesel)
41.
motor fuel (petrol and diesel)
42.
moulded fuel
43.
non-fossil fuel
44.
oxy-fuel
45.
oxy‐fuel
46.
oxy-fuel combustion
47.
PEM fuel cell
48.
PEM fuel cell cathode
49.
Proton exchange membrane fuel cell
50.
proton-exchange membrane fuel cell
51.
pulverized fuel boilers
52.
rearrangement of fuel market
53.
shale fuel oil
54.
shale fuel oil pollution
55.
ship fuel consumption
56.
Solid Fuel Chemistry
57.
solid oxide fuel cell
58.
sustainable aviation fuel
59.
wood fuel
60.
acoustic signal processing
61.
adaptive signal processing
62.
Analytical Processing
63.
audio signal processing
64.
automated data processing
65.
automatic processing of solutions
66.
batch processing
67.
biomedical signal processing
68.
biopolymer processing
69.
circularity and processing
70.
cloud processing
71.
communication-time processing
72.
complex event processing
73.
co-processing
74.
data processing
75.
differential power processing (DPP)
76.
digital signal processing
77.
EEG processing
78.
event processing
79.
Event Processing Network (EPN)
80.
Event Processing Network Model
81.
extensible processing platform
82.
FDM processing
83.
gas processing
84.
gaseous products of oil shale processing
85.
graph processing
86.
graphics processing unit
87.
graphics processing units
88.
graphics processing units (GPUs)
89.
high-performance computing systems, Information processing
90.
high-pressure processing
91.
image processing
92.
Image Processing and Pattern Recognition
93.
informatics/image processing
94.
information processing
95.
information processing system
96.
in-network data processing
97.
innovation in processing strategies
98.
knowledge processing
99.
language processing
100.
laser processing
101.
meat processing
102.
Mineral processing
103.
multicore processing
104.
multi-level selection and processing environment
105.
mussel processing
106.
natural language processing
107.
natural lan-guage processing
108.
natural language processing (NLP)
109.
NearSensor processing
110.
neural processing unit
111.
nonlinear signal processing
112.
oil shale processing
113.
online analytical processing
114.
parallel data processing
115.
parallel processing
116.
parallel processing systems
117.
partial power processing
118.
Partial power processing (PPP)
119.
personal data processing
120.
pipe-lined signal processing architectures
121.
polymer processing
122.
polyprotein processing
123.
post-processing
124.
powder processing
125.
processing
126.
processing map
127.
processing of bioinspired materials
128.
processing platform
129.
processing system
130.
processing-in-memory
131.
RNA processing
132.
rubber processing
133.
sensor signal processing
134.
Shale-oil thermal processing
135.
signal processing
136.
signal processing algorithms
137.
signals processing
138.
sol-gel processing
139.
stateful packet processing
140.
stream processing
141.
sustainable biomass processing
142.
sustainable processing
143.
thermal processing
144.
thermal processing diagram
145.
wet processing
146.
vibration signal processing
147.
video signal processing
148.
voice processing
149.
wood processing wastewater
150.
vote processing
subject term
1
1.
Statoil Fuel & Retail Eesti AS
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