Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

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Publications (18/18 displayed)

  • 2024Integrated Experimental Phase Equilibria and Thermodynamic Modelling Research and Implementation in support of progress of process pyrometallurgy towards sustainabilitycitations
  • 2024Phase equilibria in the ZnO-MgO-SiO2 and PbO-ZnO-MgO-SiO2 systems for characterizing MgO-based refractory – slag interactions4citations
  • 2023Experimental Study and Thermodynamic Modelling of Equilibrium Distributions of Ni, Sn and Zn Between Slag and Black Copper for E-Scrap Recycling Applications7citations
  • 2023Integrated Experimental Phase Equilibria and Thermodynamic Modelling Research and Implementation in Support of Sustainable Pyrometallurgical Processing4citations
  • 2021Investigation 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 System10citations
  • 2019A Phase Equilibrium of the Iron-rich Corner of the CaO–FeO–Fe2O3–SiO2 System in Air and the Determination of the SFC Primary Phase Field24citations
  • 2019Experimental investigation and thermodynamic modeling of the distributions of Ag and Au between slag, matte, and metal in the Cu–Fe–O–S–Si system26citations
  • 2019Distributions of Ag, Bi, and Sb as minor elements between iron-silicate slag and copper in equilibrium with tridymite in the Cu-Fe-O-Si system at T = 1250 °C and 1300 °C (1523 K and 1573 K)24citations
  • 2019Combined experimental and thermodynamic modelling investigation of the distribution of antimony and tin between phases in the Cu-Fe-O-S-Si system18citations
  • 2019Factors influencing the microstructures of iron ore sinters6citations
  • 2019Effect of Gas Atmosphere on the Phase Chemistry in the CaO-FeO-Fe2O3-SiO2 System Related to Iron Ore Sinter-making14citations
  • 2019Integrated experimental study and thermodynamic modelling of the distribution of arsenic between phases in the Cu-Fe-O-S-Si system25citations
  • 2017Experimental and modelling research in support of energy savings and improved productivity in non-ferrous metal production and recyclingcitations
  • 2016Phase equilibria study of the CaO-“Fe2O3”-SiO2 system in air to support iron sintering process optimisation4citations
  • 2015Experimental investigation and thermodynamic modeling of the (NiO + CaO + SiO2), (NiO + CaO + MgO) and (NiO + CaO + MgO + SiO2) systems11citations
  • 2013Experimental study and thermodynamic modeling of the MgO–NiO–SiO2 system7citations
  • 2012Experimental study and thermodynamic optimization of the CaO-NiO, MgO-NiO and NiO-SiO2 systems27citations
  • 2012Development of NiO-CaO-MgO-SiO2 thermodynamic database using experimental and thermodynamic modelling approaches with focus on NiO-MgO-SiO2 and NiO-CaO-SiO2 systemscitations

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Shevchenko, Maxim
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Sineva, Svetlana
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Co-Authors (by relevance)

  • Shevchenko, Maxim
  • Sineva, Svetlana
  • Jak, Evgueni
  • Hayes, Peter
  • Nekhoroshev, Evgenii
  • Abdeyazdan, Hamed
  • Lindgren, Mari
  • Prostakova, Viktoria
  • Cheng, Siyu
  • Hidayat, Taufiq
  • Mehrjardi, Ata Fallah
  • Decterov, Sergei A.
  • Degterov, Sergei A.
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article

Phase equilibria in the ZnO-MgO-SiO2 and PbO-ZnO-MgO-SiO2 systems for characterizing MgO-based refractory – slag interactions

  • Shevchenko, Maxim
  • Jak, Evgueni
  • Abdeyazdan, Hamed
  • Hayes, Peter
  • Chen, Jiang
Abstract

An integrated experimental and thermodynamic modelling investigation of the phase equilibria in the ZnO-MgO-SiO2 and PbO-ZnO-MgO-SiO2 systems in air has been undertaken for characterizing the effect of Zn on MgO-based refractory – slag interactions in the lead processing reactors. New experimental phase equilibria and liquidus data at 725–1740 °C were obtained using high-temperature equilibration of oxide powder mixtures followed by rapid quenching of the samples. Electron probe X-ray microanalysis was used to determine the compositions of the phases present at equilibrium conditions. Wide ranges of solid solutions were identified for periclase (Mg,Zn)O, zincite (Zn,Mg)O, olivine (Mg,Zn)2SiO4, willemite (Zn,Mg)2SiO4, pyroxene (Mg,Zn)SiO3, larsenite Pb(Zn,Mg)SiO4, barysilite Pb8(Zn,Mg)Si6O21 and melilite Pb2(Zn,Mg)Si2O7 phases, indicating possible stabilization of refractories in the presence of ZnO in slag. The experimental results were used for optimization of the parameters in a thermodynamic database that is subsequently used to describe the Pb/Cu-containing multi-component multi-phase system for characterizing slag-refractory interactions.

Topics
  • impedance spectroscopy
  • Cu-containing
  • phase
  • refractory
  • quenching