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as. dr. dr Branislav Todić

Asistent sa doktoratom
Katedra za hemijsko inženjerstvo

TMF - velika zgrada, kancelarija 464

Naučna oblast Hemijsko inženjerstvo
Datum izbora u zvanje 1. mart 2018.

Predmeti

ZP25 ZP25 - Programiranje

Legenda:

ZP...,14ZP... zajednički predmet na osnovnim akademskim studijama (OAS)
T...,14T... tekstilna tehnologija (OAS)
H...,14H... hemijsko inženjerstvo (OAS)
B...,14b... biohemijsko inženjerstvo i biotehnologija (OAS)
IŽS, 14IŽS... inženjerstvo zaštite životne sredine (OAS)
MIN...,4MIN... metalurško inženjerstvo (OAS)
IIM...,14IIM... inženjerstvo materijala (OAS)
IGI...,14IGI... grafičko inženjerstvo, dizajn i ambalaža (OAS)
M...,14M... master studije
D...,14D... doktorske studije

Bibliografija

Radovi u časopisima

  1. Marko Stamenić, Vladimir Dikic, Milos Mandic, Branislav Todić, Dragomir B. Bukur i Nikola Nikačević, Multiscale and multiphase model of fixed bed reactors for Fischer–Tropsch Synthesis: Intensification possibilities study, INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 56, 36, 2017, pp. 9964-9979
  2. Milos Mandic, Branislav Todić, Ljiljana Zivanic, Nikola Nikačević i Dragomir B. Bukur, Effects of Catalyst Activity, Particle Size and Shape, and Process Conditions on Catalyst Effectiveness and Methane Selectivity for Fischer–Tropsch Reaction: A Modeling Study, INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 56, 10, 2017, pp. 2733-2745
  3. Branislav Todić, Lech Nowicki, Nikola Nikačević i Dragomir B. Bukur, Fischer–Tropsch synthesis product selectivity over an industrial iron-based catalyst: Effect of process conditions, CATALYSIS TODAY, 261, 2016, pp. 28-39
  4. Dragomir B. Bukur, Branislav Todić i Nimir Elbashir, Role of Water-Gas-Shift Reaction in Fischer-Tropsch Synthesis on Iron Catalysts: A Review, CATALYSIS TODAY, 275, 2016, pp. 66-75
  5. Branislav Todić, Vitaly Ordomsky, Nikola Nikačević, Andrei Khodakov i Dragomir B. Bukur, Opportunities for intensification of Fischer–Tropsch synthesis through reduced formation of methane over cobalt catalysts in microreactors, CATALYSIS SCIENCE & TECHNOLOGY, 5, 2015, pp. 1400-1411
  6. Tomasz Olewski, Branislav Todić, Lech Nowicki, Nikola Nikačević i Dragomir B. Bukur, Hydrocarbon selectivity models for iron-based Fischer–Tropsch catalyst, CHEMICAL ENGINEERING RESEARCH & DESIGN, 5, 2015, pp. 1400-1411
  7. Branislav Todić, Wenping Ma, Gary Jacobs, Burtron Davis i Dragomir B. Bukur, CO-insertion mechanism based kinetic model of the Fischer–Tropsch synthesis reaction over Re-promoted Co catalyst, CATALYSIS TODAY, 228, 2014, pp. 32-39
  8. Branislav Todić, Wenping Ma, Gary Jacobs, Burtron Davis i Dragomir B. Bukur, Effect of process conditions on the product distribution of Fischer–Tropsch synthesis over a Re-promoted cobalt-alumina catalyst using a stirred tank slurry reactor, JOURNAL OF CATALYSIS, 311, 2014, pp. 325-338
  9. Gary Jacobs, Wenping Ma, Pei Gao, Branislav Todić, Tejas Bhatelia, Dragomir B. Bukur, Syed Khalid i Burtron Davis, The application of synchrotron methods in characterizing iron and cobalt Fischer–Tropsch synthesis catalysts, CATALYSIS TODAY, 214, 2013, pp. 100-139
  10. Branislav Todić, Tejas Bhatelia, Gilbert Froment, Wenping Ma, Gary Jacobs, Burtron Davis i Dragomir B. Bukur, Kinetic Model of Fischer−Tropsch Synthesis in a Slurry Reactor on Co−Re/Al2O3 Catalyst, INDUSTRIAL AND ENGINEERING CHEMISTRY RESEARCH, 52, 2013, pp. 669-679
  11. Gary Jacobs, Wenping Ma, Pei Gao, Branislav Todić, Tejas Bhatelia, Dragomir B. Bukur, Syed Khalid i Burtron Davis, Fischer-Tropsch synthesis: differences observed in local atomic structure and selectivity with Pd compared to typical promoters (Pt, Re, Ru) of Co/Al2O3 catalysts, TOPICS IN CATALYSIS, 55, 2012, pp. 811-817