Waldemar Maniukiewicz
Lecturer
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Waldemar Maniukiewicz is a Lecturer at Lodz University of Technology in Poland. His research areas include electrochemical studies of corrosion, biomineralization in kidney stones, and the synthesis and characterization of metal complexes. Recent articles authored by Professor Maniukiewicz cover diverse topics such as cancer drug interactions, photocatalytic dye degradation, and bimetallic catalysts in hydrocracking reactions.
Articles (27)
Biodiesel Production by Methanolysis of Rapeseed Oil—Influence of SiO2/Al2O3 Ratio in BEA Zeolite Structure on Physicochemical and Catalytic Properties of Zeolite Systems with Alkaline Earth Oxides (MgO, CaO, SrO)
Alkaline earth metal oxide (MgO, CaO, SrO) catalysts supported on BEA zeolite were prepared by a wet impregnation method and tested in the transesterification reaction of rapeseed oil with methanol towards the formation of biodiesel (FAMEs—fatty acid methyl esters). To assess the influence of the SiO2/Al2O3 ratio on the catalytic activity in the tested reaction, a BEA zeolite carrier material with different Si/Al ratios was used. The prepared catalysts were tested in the transesterification reaction at temperatures of 180 °C and 220 °C using a molar ratio of methanol/oil reagents of 9:1. The transesterification process was carried out for 2 h with the catalyst mass of 0.5 g. The oil conversion value and efficiency towards FAME formation were determined using the HPLC technique. The physicochemical properties of the catalysts were determined using the following research techniques: CO2-TPD, XRD, BET, FTIR, and SEM-EDS. The results of the catalytic activity showed that higher activity in the tested process was confirmed for the catalysts supported on the BEA zeolite characterized by the highest silica/alumina ratio for the reaction carried out at a temperature of 220 °C. The most active zeolite catalyst was the 10% CaO/BEA system (Si/Al = 300), which showed the highest triglyceride (TG) conversion of 90.5% and the second highest FAME yield of 94.6% in the transesterification reaction carried out at 220 °C. The high activity of this system is associated with its alkalinity, high value of the specific surface area, the size of the active phase crystallites, and its characteristic sorption properties in relation to methanol.
Year:
2024
Collaborators (26)
Dariusz Szczepanik
Assistant Professor
Jagiellonian University
Elzbieta Lodyga-Chruscinska
professor
Lodz University of Technology
Elzbieta Kusmierek
Lodz University of Technology
Izabela Witońska
Assoc. Professor, Ph.D., D.Sc.; Vice-Dean for Sudent Affairs
Lodz University of Technology
Damian Batory
Lodz University of Technology
Magdalena Rowinska-Zyrek
University of Wrocław
Malgorzata Iwona Szynkowska-Jozwik
Prof.
-
Binczarski Michał
assistant proffesor
Lodz University of Technology
Jacek Rogowski
University of Łódź
Justyna Czerwińska
Lodz University of Technology
Karolina Chałupka-Śpiewak
assistant proffesor
Lodz University of Technology
Radosław Ciesielski
Lodz University of Technology
Robert Pełka
Assoc. Prof.
Institute of Nuclear Physics Polish Academy of Sciences
Tomasz Maniecki
Lodz University of Technology
Adriana Nowak
Lodz University of Technology
Julia Kłak
Assistant Professor
University of Wrocław
Mateusz Zakrzewski
Lodz University of Technology
Elżbieta Skiba
Lodz University of Technology
Bharath Babu Nunna
Assistant Professor
Weber State University
Cristina Freire
Full Professor
University of Porto
Sylwia Ścieszka
Lodz University of Technology
Elżbieta Klewicka
Lodz University of Technology
Oleksandr Shtyka
Lodz University of Technology
Paweł Mierczyński
Lodz University of Technology
Dariusz Moczulski
Head of Department
Medical University of Lodz
Eugenio Garribba
Full Professor
University of Sassari

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