1 |
Effect of the Alkaline Metal Cations on the Electrical Conductivity of the Molten Cryolites (K(3)AIF(6), Rb(3)AIF(6), and Cs(3)AIF(6)) Simko F, Priscak J, Kubinakova E, Korenko M Journal of Chemical and Engineering Data, 65(5), 2642, 2020 |
2 |
Physicochemical Investigation of the Ternary (LiF + MgF2)(eut) + LaF3 Molten System Kubikova B, Mlynarikova J, Wu S, Miksikova E, Priscak J, Boca M, Korenko M Journal of Chemical and Engineering Data, 65(10), 4815, 2020 |
3 |
Layer formation mechanism of K-feldspar in bubbling fluidized bed combustion of phosphorus-lean and phosphorus-rich residual biomass Wagner K, Haggstrom G, Skoglund N, Priscak J, Kuba M, Ohman M, Hofbauer H Applied Energy, 248, 545, 2019 |
4 |
Apparent kinetics of the water-gas-shift reaction in biomass gasification using ash-layered olivine as catalyst Kryca J, Priscak J, Lojewska J, Kuba M, Hofbauer H Chemical Engineering Journal, 346, 113, 2018 |
5 |
The thermal electrolytic production of Mg from MgO: A discussion of the electrochemical reaction kinetics and requisite mass transport processes Leonard N, Korenko M, Larson C, Blood K, Venstrom LJ, Nudehi S, Duncan S, Diver R, Simko F, Priscak J, Schoer J, Kissinger PT, Palumbo R Chemical Engineering Science, 148, 155, 2016 |
6 |
Physicochemical properties of the system (LiF + NaF + KF(eut.) + Na7Zr6F31): Phase equilibria, density and volume properties, viscosity and surface tension Barborik P, Vaskova Z, Boca M, Priscak J Journal of Chemical Thermodynamics, 76, 145, 2014 |
7 |
Surface Tension of the NaF + AlF3 + AlPO4 and NaF + AlF3 + NaVO3 Molten Systems Kubikova B, Tomaskova Z, Priscak J Journal of Chemical and Engineering Data, 55(9), 3174, 2010 |