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Author publications

Martina Záleská

30 linked publication records · Czech Technical University in Prague; University of Chemistry and Technology; Prague

Author: Martina Záleskáclear all
Showing 1-10 of 30 records
SWS 2026 Conference Preprints
Publication

EFFECT OF CARBONATION AND HIGH HUMIDITY ON MAGNESIUM OXYCHLORIDE CEMENT COMPOSITES MODIFIED WITH GRAPHENE

(STEF92 Technology, 2026, Martina Zaleska, Milena Pavlikova, Adam Pivak, Zbysek Pavlik, Ondrej Jankovsky)

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Portland cement–based materials represent the most widely used construction materials worldwide. However, their production and application are associated with significant environmental burdens, including high CO2 emissions and the depletion of natural aggregate resources. In response to the growing demand for environmentally responsible construction solutions, this study focuses on the development of building materials based on an alternative binder. Magnesium oxychloride cement (MOC) is considered a more sustai...

Green Buildings Technologies and Materials2026
SWS 2026 Conference Preprints
Publication

EXPERIMENTAL ASSESSMENT OF NATURAL FIBRE-REINFORCED LIME-PUMICE MORTARS

(STEF92 Technology, 2026, Adam Pivak, Zbysek Pavlik, Milena Pavlikova, Martina Zaleska)

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Lime mortars are widely used in the construction, repair, and conservation of historic masonry due to their compatibility with traditional materials and their flexible, porous structure. However, their relatively low mechanical strength compared to modern cement-based materials has led to efforts to enhance their performance, for example through fibre reinforcement. This study examines the effect of two types of natural fibres (bovine and goat) on the physical, mechanical, hygric, and thermal properties of lime–...

Green Buildings Technologies and Materials2026
SWS 2026 Conference Preprints
Publication

FLY ASH AS AN ALTERNATIVE SILICA SOURCE IN MAGNESIUM SILICATE HYDRATE CEMENT

(STEF92 Technology, 2026, Martina Zaleska, Milena Pavlikova, Adam Pivak, Zbysek Pavlik, Ondrej Jankovsky)

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In an effort to develop binders with a reduced environmental impact, magnesium silicate hydrate (MSH) cement has recently attracted considerable attention. This binder belongs to the family of magnesium-based cements; however, unlike magnesium sulphate and magnesium oxychloride cements, it is classified as a hydraulic cement. It forms through the reaction of reactive magnesium oxide with silica sources in the presence of water, producing magnesium silicate hydrate (MSH) gel. Caustic-calcined magnesite, typically p...

Green Buildings Technologies and Materials2026
SWS 2026 Conference Preprints
Publication

FORMATION AND EARLY DEVELOPMENT OF MAGNESIUM SILICATE HYDRATE UNDER CONTROLLED CURING CONDITIONS

(STEF92 Technology, 2026, Adela Jirickova, Adela Kubistova, Ondrej Jankovsky, Martina Zaleska, Zbysek Pavlik)

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Magnesium silicate hydrate (M-S-H) is a promising binder phase for the development of low carbon cementitious materials. However, its formation mechanisms, phase evolution, and dependence on curing conditions remain poorly understood, particularly during the early and intermediate stages of hydration. This study investigates the formation and development of M S-H in model systems using reactive MgO and diatomite as the silica source, focusing on Mg/Si molar ratios of 0.75, 0.90, 1.05, and 1.20 under controlled cur...

Green Buildings Technologies and Materials2026
SWS 2026 Conference Preprints
Publication

USE OF NATURAL FIBRES IN HYDRAULIC LIME-BASED MORTARS: EXPERIMENTAL ANALYSIS AND EVALUATION

(STEF92 Technology, 2026, Adam Pivak, Zbysek Pavlik, Milena Pavlikova, Martina Zaleska)

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In recent years, natural fibres have gained attention as an effective means of enhancing the performance of composite materials. By forming a reinforcing network within the matrix, fibres can limit crack propagation and improve cohesion. This approach is particularly relevant for lime-based mortars used in the repair of historic masonry, which often suffer from low mechanical strength during early curing. The presented study investigates the effect of increasing animal fibre content in natural hydraulic lime-based...

Green Buildings Technologies and Materials2026
25th International Multidisciplinary Scientific GeoConference Proceedings SGEM 2025, Nano, Bio, Green, and Space Technologies for a Sustainable Future, Vol25, Issue 6.1
Publication

MAGNESIUM OXYCHLORIDE CEMENT COMPOSITES WITH INCREASED FILLER CONTENT

(STEF92 Technology, 2025-08-15, Martina Záleská, Milena Pavlíková, Adam Pivák, Zbyšek Pavlı́k, Ondrej Jankovska)

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The most widely used building materials in the world are those based on Portland cement. Unfortunately, their use is associated with a number of negative environmental impacts, from CO2 emissions to the depletion of natural aggregate resources. In order to contribute to greater environmental responsibility, this work investigated building materials containing both alternative binders and fillers. Magnesium oxychloride cement (MOC) is considered to be a more sustainable binder than Portland cement and is characteri...

Green Buildings Technologies and Materials2025
25th International Multidisciplinary Scientific GeoConference Proceedings SGEM 2025, Nano, Bio, Green, and Space Technologies for a Sustainable Future, Vol25, Issue 6.1
Publication

THE IMPACT OF DOG HAIR AS A NATURAL FIBER ADMIXTURE IN HYDRAULIC LIME MORTARS

(STEF92 Technology, 2025-08-15, Adam Pivák, Simon Marusiak, Milena Pavlíková, Martina Záleská, Zbyšek Pavlík)

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The protection and maintenance of cultural heritage is an integral aspect of urban development. Preserving the original architecture, appearance, and material design of historic buildings is of a significant importance for understanding the development of society and the changes that have occurred throughout history. In the face of increasing demands for durability, mechanical strength, water vapor permeability, and compatibility with other parts of historical construction, research has focused on innovations in l...

Green Buildings Technologies and Materials2025
25th International Multidisciplinary Scientific GeoConference Proceedings SGEM 2025, Nano, Bio, Green, and Space Technologies for a Sustainable Future, Vol25, Issue 6.1
Publication

THE IMPACT OF EGGSHELLS AND EGG WHITE ON LIME-BASED MORTAR FOR THE RESTORATION OF HISTORICAL BUILDING STOCK - A PRELIMINARY INVESTIGATION

(STEF92 Technology, 2025-08-15, Milena Pavlikov, Martina Záleská, Adam Pivák, Sarka Sporova, Zbyšek Pavlı́k)

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Historical building structures are vital in illuminating human history. Ensuring their preservation and passing them down to future generations is of great importance. The preservation and restoration of historical buildings constitute a complex and highly relevant issue, wherein the criteria for compatibility in the selection and development of appropriate materials and application technologies are of significant importance. In historical context, the enhancement of lime mortar properties was achieved through the...

Green Buildings Technologies and Materials2025
25th International Multidisciplinary Scientific GeoConference Proceedings SGEM 2025, Nano, Bio, Green, and Space Technologies for a Sustainable Future, Vol25, Issue 6.1
Publication

UPCYCLING OF RESIDUE FROM PLASMA GASIFICATION OF WASTE IN THE FORM OF SUPPLEMENTARY CEMENTITOUS MATERIAL

(STEF92 Technology, 2025-08-15, Zbyšek Pavlı́k, Martina Záleská, Adam Pivák, Kateřina Čermáková, Milena Pavlíková)

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Human activities on a global scale are increasingly generating substantial quantities of solid waste. Consequently, in recent years, there has been a significant worldwide initiative to reduce waste production and reuse existing waste, including non-recyclable plastics, industrial waste, sewage sludge, hazardous waste, municipal waste, among others. To ensure environmental quality, further treatment of waste is essential to prevent its accumulation in landfills. For waste materials that cannot be recycled or for w...

Green Buildings Technologies and Materials2025
24th International Multidisciplinary Scientific GeoConference Proceedings SGEM 2024, Nano, Bio, Green and Space: Technologies for Sustainable Future, Vol 24, Issue 6.1
Publication

FLUOROGRAPHENE-DOPED MAGNESIUM OXYCHLORIDE CEMENT COMPOSITES FOR CONSTRUCTION

(STEF92 Technology, 2024-11-01, Martina Záleská, Milena Pavlíková, Adam Pivák, Zbyšek Pavlík, Ondřej Jankovský)

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In addition to excellent mechanical, physical and chemical parameters, magnesium oxychloride cement (MOC) composites offer numerous environmental benefits, particularly with regard to the necessary reduction of carbon dioxide emissions associated with the production of Portland cement based building materials. However, the limitation to the wider use of MOC is its low water resistance. Therefore, the possibility of improving the water resistance of magnesium oxychloride cement (MOC) composites by nano-adjustment u...

Green Buildings Technologies and Materials2024
Showing 1-10 of 30 records