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Институт катализа СО РАН в зеркале наукометрии
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Интенсификация процесса окисления бурого и каменного углей активирующей добавкой Fe(NO3)2
Химия твердого топлива. 2019.
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143
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Vedyagin A.A.
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144
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Bauman Y.I.
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V.58. N2. P.685-694. DOI: 10.1021/acs.iecr.8b02186
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145
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Temerev V.L.
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146
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Vedyagin A.A.
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Prospect of Using Nanoalloys of Partly Miscible Rhodium and Palladium in Three-Way Catalysis
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V.62. N1-4. P.305-314. DOI: 10.1007/s11244-018-1093-0
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147
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Zibareva I.V.
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Boreskov Institute of Catalysis: Sixty Years of Research and Development
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V.127. N1. P.3–17. DOI: 10.1007/s11144-019-01547-3
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148
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Kenzhin R.M.
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Study on Thermal Stability of Ceria-Supported Rhodium Catalysts
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149
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Karnaukhov T.M.
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Sol–Gel Synthesis and Characterization of the Binary Ni–Mg–O Oxide System
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V.92. N1. P.208–214. DOI: 10.1007/s10971-019-05076-2
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150
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Zibareva I.V.
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151
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New Trends in Automotive Exhaust Gas Purification Materials: Improvement of the Support Against Stability of the Active Components
In compilation
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152
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Bauman Y.
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Synthesis and Functionalization of Filamentous Carbon Material via Decomposition of 1,2-Dichlorethane over Self-Organizing Ni-Mo Catalyst
In compilation
Material Science and Engineering Technology VII : 7th International Conference on Material Science and Engineering Technology (ICMSET 2018).
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153
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Wang C.
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Features of the Carbon Nanofibers Growth over Ni-Pd Catalyst Depending on the Reaction Conditions
In compilation
Material Science and Engineering Technology VII : 7th International Conference on Material Science and Engineering Technology (ICMSET 2018).
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154
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Vedyagin A.A.
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155
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Kenzhin R.M.
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Vedyagin A.A.
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157
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Bauman Y.I.
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158
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Shelepova E.
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Energy-Efficient Dehydrogenation of Methanol in a Membrane Reactor: A Mathematical Modeling
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159
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Zaikovskii V.I.
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V.444. P.336-338. DOI: 10.1016/j.apsusc.2018.03.056
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160
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Yakovlev I.V.
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Stabilizing Effect of the Carbon Shell on Phase Transformation of the Nanocrystalline Alumina Particles
Ceramics International. 2018.
V.44. N5. P.4801-4806. DOI: 10.1016/j.ceramint.2017.12.066
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