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Dr Maksym Shevchenko
Dr

Maksym Shevchenko

Email: 
Phone: 
+61 7 344 32718

Overview

Availability

Dr Maksym Shevchenko is:
Available for supervision

Qualifications

  • Masters (Coursework), National Taras Shevchenko University of Kyiv
  • Doctor of Philosophy, The University of Queensland

Research impacts

B.Sc. in Chemistry (2010), M.Sc. in Chemistry (2012) at Kyiv National Taras Shevchenko University (Ukraine).

Leading Engineer at Frantsevich Institute for Problems of Materials Sciences, Kyiv, Ukraine (2012-2015). Specialised in calorimetry of liquid metallic alloys and thermodynamic modeling (associated solutions model, etc.)

PhD Student (2015-2019) - Pyrometallurgy, Research Fellow (2019 - current) at PyroSearch Pyrometallurgy Innovation Centre, The University of Queensland.

Works

Search Professor Maksym Shevchenko’s works on UQ eSpace

171 works between 2010 and 2025

81 - 100 of 171 works

2021

Conference Publication

Integrated Experimental Phase Equilibria and Crystallisation Kinetic Study of the FeO-Fe2O3-CaO-SiO2-Al2O3 System for the Iron-sintering Industry.

Cheng, Siyu, Shevchenko, Maksym and Jak, Evgueni (2021). Integrated Experimental Phase Equilibria and Crystallisation Kinetic Study of the FeO-Fe2O3-CaO-SiO2-Al2O3 System for the Iron-sintering Industry.. 11th International Conference on Molten Slags, Fluxes and Salts, Seoul, Korea, 21-25 February.

Integrated Experimental Phase Equilibria and Crystallisation Kinetic Study of the FeO-Fe2O3-CaO-SiO2-Al2O3 System for the Iron-sintering Industry.

2021

Journal Article

Experimental investigation of slag/matte/metal/ tridymite equilibria in the Cu–Fe–O–S–Si system at 1473 K (1200°C), 1523 K (1250°C) and 1573 K (1300°C)

Sineva, Svetlana, Chen, Jeff, Hidayat, Taufiq, Shevchenko, Maksym, Hayes, Peter C. and Jak, Evgueni (2021). Experimental investigation of slag/matte/metal/ tridymite equilibria in the Cu–Fe–O–S–Si system at 1473 K (1200°C), 1523 K (1250°C) and 1573 K (1300°C). International Journal of Materials Research, 365-272. doi: 10.3139/146.111899

Experimental investigation of slag/matte/metal/ tridymite equilibria in the Cu–Fe–O–S–Si system at 1473 K (1200°C), 1523 K (1250°C) and 1573 K (1300°C)

2021

Conference Publication

Experimental study of slag/matte/metal equilibria in the Cu-Fe-O-S-Si system for low copper concentrations in the matte phase

Sineva, Svetlana, Shishin, Denis, Shevchenko, Maksym, Hayes, Peter and Jak, Evgueni (2021). Experimental study of slag/matte/metal equilibria in the Cu-Fe-O-S-Si system for low copper concentrations in the matte phase. 11th International Conference on Molten Slags, Fluxes and Salts, Seoul, Korea, 21-25 February 2021.

Experimental study of slag/matte/metal equilibria in the Cu-Fe-O-S-Si system for low copper concentrations in the matte phase

2021

Conference Publication

Thermodynamic modelling of molten slag, matte, metal and speiss phases for the pyrometallurgy of lead (Pb) processing systems

Shishin, Denis, Shevchenko, Maksym, Prostakova, Viktoria, Hayes, Peter and Jak, Evgueni (2021). Thermodynamic modelling of molten slag, matte, metal and speiss phases for the pyrometallurgy of lead (Pb) processing systems. 11th International Conference on Molten Slags, Fluxes and Salts, Seoul, Korea, 21-25 February 2021.

Thermodynamic modelling of molten slag, matte, metal and speiss phases for the pyrometallurgy of lead (Pb) processing systems

2021

Conference Publication

Recent developments in experimental and thermodynamic modelling techniques for the characterisation of phase equilibria in complex high temperature oxide systems

Shevchenko, Maksym , Shishin, Denis , Hayes, Peter C. and Jak, Evgueni (2021). Recent developments in experimental and thermodynamic modelling techniques for the characterisation of phase equilibria in complex high temperature oxide systems. 11th International Conference on Molten Slags, Fluxes and Salts, Seoul, Korea, 21-25 February 2021.

Recent developments in experimental and thermodynamic modelling techniques for the characterisation of phase equilibria in complex high temperature oxide systems

2021

Conference Publication

Characterisation of complex gas-slag-matte-speiss-metal systems through integrated experimental and thermodynamic modelling research for pyrometallurgical processing

Jak, Evgueni, Shevchenko, Maksym, Shishin, Denis and Hayes, Peter (2021). Characterisation of complex gas-slag-matte-speiss-metal systems through integrated experimental and thermodynamic modelling research for pyrometallurgical processing. 11th International Conference on Molten Slags, Fluxes and Salts, Seoul, Korea, 21-25 February 2021.

Characterisation of complex gas-slag-matte-speiss-metal systems through integrated experimental and thermodynamic modelling research for pyrometallurgical processing

2021

Journal Article

Investigation of the thermodynamic stability of C(A, F)3 solid solution in the FeO-Fe2O3-CaO-Al2O3 System and SFCA Phase in the FeO-Fe2O3-CaO-SiO2-Al2O3 System

Chen, Jiang, Cheng, Siyu, Shevchenko, Maksym, Hayes, Peter C. and Jak, Evgueni (2021). Investigation of the thermodynamic stability of C(A, F)3 solid solution in the FeO-Fe2O3-CaO-Al2O3 System and SFCA Phase in the FeO-Fe2O3-CaO-SiO2-Al2O3 System. Metallurgical and Materials Transactions B, 52 (1), 517-527. doi: 10.1007/s11663-020-02035-z

Investigation of the thermodynamic stability of C(A, F)3 solid solution in the FeO-Fe2O3-CaO-Al2O3 System and SFCA Phase in the FeO-Fe2O3-CaO-SiO2-Al2O3 System

2020

Journal Article

Experimental study of the individual effects of Al2O3, CaO and MgO on gas/slag/matte/spinel equilibria in Cu-Fe-O-S-Si-Al-Ca-Mg system at 1473 K (1200 °C) and p(SO2) = 0.25 atm

Sineva, Svetlana, Fallah-Mehrjardi, Ata, Hidayat, Taufiq, Hayes, Peter C. and Jak, Evgueni (2020). Experimental study of the individual effects of Al2O3, CaO and MgO on gas/slag/matte/spinel equilibria in Cu-Fe-O-S-Si-Al-Ca-Mg system at 1473 K (1200 °C) and p(SO2) = 0.25 atm. Journal of Phase Equilibria and Diffusion, 41 (6), 859-869. doi: 10.1007/s11669-020-00847-9

Experimental study of the individual effects of Al2O3, CaO and MgO on gas/slag/matte/spinel equilibria in Cu-Fe-O-S-Si-Al-Ca-Mg system at 1473 K (1200 °C) and p(SO2) = 0.25 atm

2020

Journal Article

Experimental study and thermodynamic optimization of the ZnO–FeO–Fe2O3–CaO–SiO2 system

Shevchenko, M. and Jak, E. (2020). Experimental study and thermodynamic optimization of the ZnO–FeO–Fe2O3–CaO–SiO2 system. CALPHAD, 71 102011, 102011. doi: 10.1016/j.calphad.2020.102011

Experimental study and thermodynamic optimization of the ZnO–FeO–Fe2O3–CaO–SiO2 system

2020

Journal Article

Thermodynamic optimization of the binary CaO–ZnO and ternary CaO–ZnO–SiO2 systems

Shevchenko, M. and Jak, E. (2020). Thermodynamic optimization of the binary CaO–ZnO and ternary CaO–ZnO–SiO2 systems. Calphad: Computer Coupling of Phase Diagrams and Thermochemistry, 70 101800, 1-8. doi: 10.1016/j.calphad.2020.101800

Thermodynamic optimization of the binary CaO–ZnO and ternary CaO–ZnO–SiO2 systems

2020

Journal Article

Experimental measurement and thermodynamic model predictions of the distributions of Cu, As, Sb and Sn between liquid lead and PbO–FeO–Fe2O3–SiO2 slag

Shishin, Denis, Hidayat, Taufiq, Sultana, Ummul Khair, Shevchenko, Maksym and Jak, Evgueni (2020). Experimental measurement and thermodynamic model predictions of the distributions of Cu, As, Sb and Sn between liquid lead and PbO–FeO–Fe2O3–SiO2 slag. International Journal of Materials Research, 111 (9) 146.111942, 733-743. doi: 10.3139/146.111942

Experimental measurement and thermodynamic model predictions of the distributions of Cu, As, Sb and Sn between liquid lead and PbO–FeO–Fe2O3–SiO2 slag

2020

Journal Article

Thermodynamic optimization of the binary PbO–CaO and ternary PbO–CaO–SiO2 systems

Shevchenko, M. and Jak, E. (2020). Thermodynamic optimization of the binary PbO–CaO and ternary PbO–CaO–SiO2 systems. Calphad: Computer Coupling of Phase Diagrams and Thermochemistry, 70 101807, 1-9. doi: 10.1016/j.calphad.2020.101807

Thermodynamic optimization of the binary PbO–CaO and ternary PbO–CaO–SiO2 systems

2020

Journal Article

Phase equilibria and minor element distributions in complex copper/slag/matte systems

Sineva, Svetlana, Shevchenko, Maksym, Shishin, Denis, Hidayat, Taufiq, Chen, Jiang, Hayes, Peter C. and Jak, Evgueni (2020). Phase equilibria and minor element distributions in complex copper/slag/matte systems. JOM, 72 (10), 3401-3409. doi: 10.1007/s11837-020-04326-x

Phase equilibria and minor element distributions in complex copper/slag/matte systems

2020

Journal Article

Thermodynamic optimization of the binary PbO-“Cu2O”, “Cu2O”-SiO2 and ternary PbO-“Cu2O”-SiO2 systems

Shevchenko, M. and Jak, E. (2020). Thermodynamic optimization of the binary PbO-“Cu2O”, “Cu2O”-SiO2 and ternary PbO-“Cu2O”-SiO2 systems. Calphad, 69 101774, 1-6. doi: 10.1016/j.calphad.2020.101774

Thermodynamic optimization of the binary PbO-“Cu2O”, “Cu2O”-SiO2 and ternary PbO-“Cu2O”-SiO2 systems

2020

Journal Article

Experimental liquidus studies of the ZnO-“CuO0.5” and ZnO-“CuO0.5”-SiO2 liquidus in equilibrium with Cu-Zn metal

Shevchenko, M. and Jak, E. (2020). Experimental liquidus studies of the ZnO-“CuO0.5” and ZnO-“CuO0.5”-SiO2 liquidus in equilibrium with Cu-Zn metal. Journal of Phase Equilibria and Diffusion, 41 (3), 207-217. doi: 10.1007/s11669-020-00809-1

Experimental liquidus studies of the ZnO-“CuO0.5” and ZnO-“CuO0.5”-SiO2 liquidus in equilibrium with Cu-Zn metal

2020

Journal Article

Experimental investigation of slag/matte/metal/ tridymite equilibria in the Cu-Fe-O-S-Si system at 1 473 K (1200°C), 1 523 K (1250 °C) and 1573 K (1300 °C)

Sineva, Svetlana, Chen, Jeff, Hidayat, Taufiq, Shevchenko, Maksym, Hayes, Peter C. and Jak, Evgueni (2020). Experimental investigation of slag/matte/metal/ tridymite equilibria in the Cu-Fe-O-S-Si system at 1 473 K (1200°C), 1 523 K (1250 °C) and 1573 K (1300 °C). International Journal of Materials Research, 111 (5), 365-372. doi: 10.3139/146.111899

Experimental investigation of slag/matte/metal/ tridymite equilibria in the Cu-Fe-O-S-Si system at 1 473 K (1200°C), 1 523 K (1250 °C) and 1573 K (1300 °C)

2020

Journal Article

Mixing enthalpies of Sr-Sb melts

Ivanov, M. I., Romanova, L. O., Shevchenko, M. O., Sudavtsova, V. S. and Kudin, V. G. (2020). Mixing enthalpies of Sr-Sb melts. Powder Metallurgy and Metal Ceramics, 58 (11-12), 725-729. doi: 10.1007/s11106-020-00129-6

Mixing enthalpies of Sr-Sb melts

2020

Journal Article

Thermodynamic optimization of the ZnO–FeO–Fe2O3–SiO2 system

Shevchenko, M. and Jak, E. (2020). Thermodynamic optimization of the ZnO–FeO–Fe2O3–SiO2 system. Calphad, 68 101735, 101735. doi: 10.1016/j.calphad.2019.101735

Thermodynamic optimization of the ZnO–FeO–Fe2O3–SiO2 system

2020

Journal Article

Thermodynamic properties and phase equilibria of Nd-Ni alloys

Sudavtsova, V. S., Shevchenko, M. O., Ivanov, M. I., Kudin, V. G. and Podopryhora, N. V. (2020). Thermodynamic properties and phase equilibria of Nd-Ni alloys. Powder Metallurgy and Metal Ceramics, 58 (9-10), 581-590. doi: 10.1007/s11106-020-00115-y

Thermodynamic properties and phase equilibria of Nd-Ni alloys

2020

Journal Article

Experimental Study of Gas-Slag-Matte-Tridymite Equilibria in the Cu-Fe-O-S-Si-Al System at 1573 K (1300 degrees C) and P(SO2)=0.25 atm

Abdeyazdan, Hamed, Fallah-Mehrjardi, Ata, Hidayat, Taufiq, Shevchenko, Maksym, Hayes, Peter C. and Jak, Evgueni (2020). Experimental Study of Gas-Slag-Matte-Tridymite Equilibria in the Cu-Fe-O-S-Si-Al System at 1573 K (1300 degrees C) and P(SO2)=0.25 atm. Journal of Phase Equilibria and Diffusion, 41 (1), 66-78. doi: 10.1007/s11669-020-00779-4

Experimental Study of Gas-Slag-Matte-Tridymite Equilibria in the Cu-Fe-O-S-Si-Al System at 1573 K (1300 degrees C) and P(SO2)=0.25 atm

Funding

Current funding

  • 2024 - 2027
    Increasing production and recovery of Ni and Co at BHP Nickel West smelting operations, Kalgoorlie (RTCM Trailblazer project administered by Curtin University)
    Curtin University
    Open grant

Past funding

  • 2018 - 2023
    New copper lead processes for critical metals recovery from complex sources
    ARC Linkage Projects
    Open grant

Supervision

Availability

Dr Maksym Shevchenko is:
Available for supervision

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Supervision history

Current supervision

  • Doctor Philosophy

    The Fundamental Experimental and Thermodynamical Phase Equilibria Studies of the Cu-Sb-Sn-Ni-S-Fe-As Matte / Speiss / Liquid Metal System in Support of Improvements of Existing and Developments of Novel Sustainable High-Temperature Pyrometallurgical Refining, Recycling, and Recovery Technologies from Integrated Sources

    Principal Advisor

    Other advisors: Professor Evgueni Jak, Emeritus Professor Peter Hayes

  • Master Philosophy

    Implementation of fundamental experimental, thermodynamic and physicochemical modelling studies of slag/matte/metal/gas systems in support of improvements of existing and developments of new sustainable high temperature metallurgical and recycling technologies

    Associate Advisor

    Other advisors: Professor Evgueni Jak

  • Doctor Philosophy

    Fundamental experimental, thermodynamic and physicochemical modelling studies of slag/matte/metal/gas systems in support of improvements of existing and developments of new sustainable high temperature metallurgical and recycling technologies

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Dr Denis Shishin, Dr Jeff Chen

  • Master Philosophy

    Implementation of fundamental experimental, thermodynamic and physicochemical modelling studies of slag/matte/metal/gas systems in support of improvements of existing and developments of new sustainable high temperature metallurgical and recycling technologies

    Associate Advisor

    Other advisors: Dr Hamed Abdeyazdan, Professor Evgueni Jak, Dr Jason Wen

  • Doctor Philosophy

    Fundamental experimental, thermodynamic and physicochemical modelling studies of slag/matte/metal/gas systems in support of improvements of existing and developments of new sustainable high temperature metallurgical and recycling technologies

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Dr Jeff Chen, Dr Evgenii Nekhoroshev

  • Master Philosophy

    Thermochemistry Study for Copper Slag Electric Cleaning Furnace Optimization

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Dr Hamed Abdeyazdan, Dr Roman Starykh

  • Doctor Philosophy

    Fundamental experimental, thermodynamic and physicochemical modelling studies of slag/matte/metal/gas systems in support of improvements of existing and developments of new sustainable high temperature metallurgical and recycling technologies

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Dr Denis Shishin, Dr Jeff Chen

  • Doctor Philosophy

    Development of the thermodynamic database for the optimisation of the recycling of waste from electrical and electronic equipment (WEEE)

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Emeritus Professor Peter Hayes, Dr Denis Shishin

  • Doctor Philosophy

    Development of the thermodynamic database for the optimisation of the recycling of waste from electrical and electronic equipment (WEEE)

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Emeritus Professor Peter Hayes, Dr Denis Shishin

  • Doctor Philosophy

    Development of the thermodynamic database for the optimisation of the recycling of waste from electrical and electronic equipment (WEEE)

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Emeritus Professor Peter Hayes, Dr Denis Shishin

  • Doctor Philosophy

    Experimental and modeling study of high-temperature slag viscosity for metal extraction and recycling

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Dr Evgenii Nekhoroshev, Dr Roman Starykh

  • Doctor Philosophy

    Fundamental experimental, thermodynamic and physicochemical modelling studies of slag/matte/metal/gas systems in support of improvements of existing and developments of new sustainable high temperature metallurgical and recycling technologies

    Associate Advisor

    Other advisors: Professor Evgueni Jak, Dr Denis Shishin, Dr Jeff Chen

Completed supervision

Media

Enquiries

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