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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Materials Map under construction

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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1.080 Topics available

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Csetényi, L. J.

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University of Dundee

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (24/24 displayed)

  • 2024Mechanical processing of wet stored fly ash for use as a cement component in concretecitations
  • 2024Assessing setting times of cementitious materials using semi‑adiabatic calorimetrycitations
  • 2023Portlandcementek Kötési Idejének Meghatározása Féladiabatikus Kalorimetriás Módszerrelcitations
  • 2023Fungal biorecovery of cerium as oxalate and carbonate biominerals9citations
  • 2022Impact of fly ash production and sourcing changes on chemical and physical aspects of concrete durability16citations
  • 2022Fungal colonization and biomineralization for bioprotection of concrete22citations
  • 2022Influence of wet storage on fly ash reactivity and processing for use in concrete3citations
  • 2022Fungal-induced CaCO3 and SrCO3 precipitation38citations
  • 2021Potential of Weathered Blast Furnace Slag for use as an Addition in Concrete3citations
  • 2020Oil-based mud waste reclamation and utilisation in low-density polyethylene composites5citations
  • 2019Direct and indirect bioleaching of cobalt from low grade laterite and pyritic ores by Aspergillus niger25citations
  • 2019Amino acid secretion influences the size and composition of copper carbonate nanoparticles synthesized by ureolytic fungi49citations
  • 2017Evaluation of Fly Ash Reactivity Potential Using a Lime Consumption Test10citations
  • 2016Abrasion resistance of sustainable green concrete containing waste tire rubber particles113citations
  • 2016Performance Characteristics of Waste Glass Powder Substituting Portland Cement in Mortar Mixtures5citations
  • 2015Influence of Portland cement characteristics on air-entrainment in fly ash concrete6citations
  • 2015Sustainable use of marble slurry in concrete217citations
  • 2015Durability studies on concrete containing wollastonite68citations
  • 2013Mechanical and durability studies on concrete containing wollastonite-fly ash combination77citations
  • 2013Evaluating Test Methods for Rapidly Assessing Fly Ash Reactivity for Use in Concretecitations
  • 2010Mechanisms of sulfate heave prevention in lime stabilized clays through pozzolanic additions2citations
  • 2003Alkali activation of PFAcitations
  • 2002Effect of potassium on setting times of borate admixed cement pastescitations
  • 2001Phase equilibrium study in the CaO-K2O-B2O3-H2O system at 25°C21citations

Places of action

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Hope, Thomas A.
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Mccarthy, Michael John
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Baranyi, Attila
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Kopecskó, Katalin
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Kang, Xia
1 / 1 shared
Gadd, Geoffrey Michael
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Yakub, Hamza I.
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Dyer, Thomas Daniel
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Zhao, Jiayue
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Jones, Prof M. R.
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Hope, Thomas
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Siddique, Shohel
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Matthews, Kerr
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Yates, Kyari
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Njuguna, James
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Ferrier, John
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Yang, Yuyi
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Liu, Feixue
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Strompinis, Nikolaos
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Yakub, Hamza
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Kumar, Sanjeev
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Thomas, Blessen Skariah
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Joseph, Miquel
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Gupta, Ramesh Chandra
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Mehra, Priyansha
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Kara, P.
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Borosnyói, A.
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Islam, G. M. Sadiqul
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Rana, Aditya
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Kalla, Pawan
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Chad, Yog Bahadur
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Misra, Anurag
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Arora, Amarnath
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Gahlot, Vimal
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Sachdeva, Anisha
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Dhir, R. K.
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Csetenyi, E.
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Apagyi, Z.
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Apagyi, Zsolt
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Co-Authors (by relevance)

  • Hope, Thomas A.
  • Mccarthy, Michael John
  • Baranyi, Attila
  • Kopecskó, Katalin
  • Kang, Xia
  • Gadd, Geoffrey Michael
  • Yakub, Hamza I.
  • Dyer, Thomas Daniel
  • Zhao, Jiayue
  • Jones, Prof M. R.
  • Hope, Thomas
  • Siddique, Shohel
  • Matthews, Kerr
  • Yates, Kyari
  • Njuguna, James
  • Ferrier, John
  • Yang, Yuyi
  • Liu, Feixue
  • Strompinis, Nikolaos
  • Yakub, Hamza
  • Kumar, Sanjeev
  • Thomas, Blessen Skariah
  • Joseph, Miquel
  • Gupta, Ramesh Chandra
  • Mehra, Priyansha
  • Kara, P.
  • Borosnyói, A.
  • Islam, G. M. Sadiqul
  • Rana, Aditya
  • Kalla, Pawan
  • Chad, Yog Bahadur
  • Misra, Anurag
  • Arora, Amarnath
  • Gahlot, Vimal
  • Sachdeva, Anisha
  • Dhir, R. K.
  • Csetenyi, E.
  • Apagyi, Z.
  • Apagyi, Zsolt
OrganizationsLocationPeople

article

Sustainable use of marble slurry in concrete

  • Rana, Aditya
  • Kalla, Pawan
  • Csetényi, L. J.
Abstract

<p>The Portland cement manufacturing process is a major contributor to greenhouse gas emissions and depletion of natural resources. The partial substitution of cement by industrial waste such as fly ash, silica fume, slag, stone waste etc. not only contributes to sustainable development, but also enhances the durability of concrete. Among the different wastes investigated in the past, the effect of marble slurry on durability of concrete has not been studied. Cutting, grinding and polishing manoeuvres in marble processing plants generate a large amount of slurry, which adversely affects the environment and humans. The present study examines the feasibility of using marble slurry in concrete production, as partial replacement of Portland cement. Six concrete mixes, containing marble slurry (up to 25%) in place of Portland cement were prepared and evaluated for strength, permeability, porosity, morphology, resistance to chloride migration, carbonation and corrosion. Optimal replacement level of Portland cement by marble slurry was found at 10%.</p>

Topics
  • impedance spectroscopy
  • morphology
  • corrosion
  • grinding
  • strength
  • cement
  • permeability
  • porosity
  • durability
  • polishing