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Sebastian Drużyński
Sebastian Drużyński
Department of Chemical Technology, Nicolaus Copernicus University in Torun, Poland
在 uni.torun.pl 的电子邮件经过验证
标题
引用次数
引用次数
年份
Nanotube-mediated efficiency of cisplatin anticancer therapy
K Werengowska-Ciećwierz, M Wiśniewski, AP Terzyk, N Gurtowska, ...
Carbon 70, 46-58, 2014
282014
Investigation of the Solubility in the NaVO3−NaNO3−H2O System
M Trypuć, S Drużyński
Industrial & engineering chemistry research 46 (9), 2688-2692, 2007
142007
New separation material obtained from waste rapeseed cake for copper (ii) and zinc (ii) removal from the industrial wastewater
K Mazurek, S Drużyński, U Kiełkowska, E Szłyk
Materials 14 (10), 2566, 2021
122021
Investigation of Mutual Solubility in the NH4VO3−NH4NO3−H2O system
M Trypuć, S Drużyński
Industrial & engineering chemistry research 48 (10), 5058-5063, 2009
122009
Solubility in the NH4NO3 + NaNO3 + H2O System
M Trypuć, S Drużyński
Industrial & engineering chemistry research 47 (10), 3767-3770, 2008
122008
Method of utilization of the spent vanadium catalyst
K Mazurek, P Grzesiak, S Drużyński, U Kiełkowska, A Wróbel, A Szalla
Polish Journal of Chemical Technology 20 (3), 1-7, 2018
112018
The Use of Ion Exchange in the Recovery of Vanadium from the Mass of a Spent Catalyst Used in the Oxidation of SO to SO
S Drużyński, K Mazurek, K Białowicz
Polish Journal of Chemical Technology 16 (2), 69-73, 2014
112014
The influence of leaching solution pH and addition of peroxide hydrogen on the recovery of some components from the used vanadium catalyst with urea solutions
K Mazurek, M Trypuć, K Białowicz, S Drużyński
Polish Journal of Chemical Technology 10 (4), 34-36, 2008
112008
Application of sulphate and magnesium enriched waste rapeseed cake biochar for recovery of Cu (II) and Zn (II) from industrial wastewater generated in sulphuric acid plants
K Mazurek, S Drużyński, U Kiełkowska, A Bielicka, J Gluzińska
Hydrometallurgy 216, 106014, 2023
102023
Solubility in the Reciprocal Quaternary NH4+–Na+–NO3–VO3–H2O System at (313 and 323) K
M Trypuć, S Drużyński
Journal of Chemical & Engineering Data 56 (6), 2919-2926, 2011
82011
Phase Diagram for the NH4NO3 + NaVO3 + NH4VO3 + NaNO3 + H2O System at 293 and 303 K
M Trypuć, S Drużyński
Industrial & engineering chemistry research 48 (15), 6937-6942, 2009
82009
Plotting of the solubility isotherm for the NHNO+ NaVO+ HO system
M Trypuć, S Drużyński, K Mazurek
Polish Journal of Chemical Technology 10 (4), 11-14, 2008
82008
Lanthanum enriched TiO2-ZrO2 hybrid material with tailored physicochemical properties dedicated to separation of lithium and cobalt (II) raising from the hydrometallurgical …
K Mazurek, E Weidner, S Drużyński, F Ciesielczyk, U Kiełkowska, ...
Hydrometallurgy 197, 105448, 2020
72020
Utilization of the post-filtration lye from the SCS method of soda production
M TrypuĆ, S Drużyński, U Kiełkowska, K Mazurek
Polish Journal of Chemical Technology 9 (4), 59-62, 2007
72007
Utilization of used contact masses from the oxidation state of sulfur (IV) oxide to sulfur (VI) oxide
M Trypuć, K Mazurek, U Kiełkowska, S Drużyński
Polish Journal of Chemical Technology 9 (3), 26-28, 2007
72007
Municipal sewage sludge as a source for obtaining efficient biosorbents: Analysis of pyrolysis products and adsorption tests
K Mazurek, S Drużyński, U Kiełkowska, A Węgrzynowicz, AK Nowak, ...
Materials 16 (7), 2648, 2023
62023
Equilibrium Study in the KNO3 + NH4NO3 + H2O System at Temperatures from 293.15 to 323.15 K
A Wróbel-Kaszanek, S Drużyński, U Kiełkowska, K Mazurek
Journal of Chemical & Engineering Data 64 (2), 784-790, 2019
42019
Investigations on the Solubility, Density, and Viscosity in the NaVO3 + Na2SO4 + H2O System from 293.15 K to 323.15 K
K Mazurek, S Drużyński
Journal of Chemical & Engineering Data 59 (5), 1468-1475, 2014
42014
The Application of Pyrolysis Biochar Obtained from Waste Rapeseed Cake to Remove Copper from Industrial Wastewater: An Overview
K Mazurek, S Drużyński, U Kiełkowska, A Wróbel-Kaszanek, B Igliński, ...
Energies 17 (2), 498, 2024
32024
Solid Liquid Equilibria Studies in the KVO3–KNO3–H2O System in the Temperature Range 293.15–323.15 K
A Wróbel, S Drużyński, U Kiełkowska
Journal of Chemical & Engineering Data 62 (11), 3802-3806, 2017
32017
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