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    1. Naturvetenskap och teknik
    2. Geovetenskap
    3. Miljövetenskap och miljöpolitik

    Cementitious Matrices for Low- and Intermediate-Level Radioactive Waste Immobilization

    AvPavlo Kryvenko,Francisca Puertas

    Häftad, Engelska, 2026

    Del i serien Woodhead Publishing Series in Civil and Structural Engineering

    2 182 kr

    Kommande

    Beskrivning

    Cementitious Matrices for Low- and Intermediate-Level Radioactive Waste Immobilization reports research progress in this context, reviewing both traditional solidification methodologies and state-of-the-art developments in cementation technologies that promise to fulfill safety functions more dependably and ensure closer compliance with environmentally conscious practices and regulations. The book begins by classifying and characterizing radioactive wastes and explaining the chemistry of cementitious matrices, facilitating the choice of solidification agents and processing equipment. It offers guidelines for the selection of bonding materials, such as hydraulic cement or polymers, and discusses several admixtures and adsorbents to enhance embedding, binder properties, and contaminant stabilization.

    The book also includes statistical techniques for generating response surface models for large, complicated applications and case studies that collate the international authoring team’s firsthand insights into optimized handling of immobilized waste forms.

    • Substantiates the efficacy of cementitious matrices for low- and intermediate-level radioactive waste immobilization in terms of adaptability, durability, and overall low environmental impact
    • Provides step-by-step instructions to model the chemical binding processes of radioactive elements within zeolite-like cementitious matrices for predicting their behavior under various environmental conditions, thereby contributing to more reliable safety assessments of radioactive waste repositories
    • Features case studies which detail practical-experience scenarios of the use of alkali-activated cement for waste management and disposal at nuclear power stations with different types of reactors

    Produktinformation

    • Utgivningsdatum:2026-11-01
    • Mått:152 x 229 x undefined mm
    • Format:Häftad
    • Språk:Engelska
    • Serie:Woodhead Publishing Series in Civil and Structural Engineering
    • Antal sidor:350
    • Förlag:Elsevier Science
    • ISBN:9780443277375

    Utforska kategorier

    • Miljövetenskap och miljöpolitik inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik
    • Byggnadsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Kryvenko is currently a professor in the Department of Technology of Building Structures and Products and director of the Scientific Research Institute for Binders and Materials, Kyiv National University of Construction and Architecture, Ukraine. He graduated from the Dnepropetrovsk Civil Engineering Institute with an Engineer in Building Materials Technology diploma in 1961. He received his PhD from the Kyiv Civil Engineering Institute in 1971 and a DSc from the Kyiv Polytechnical Institute in 1986. His research interests include the synthesis of alkali-activated cements and materials based on them. He is not only a prolific author, but also principal investigator on several national and international projects. He is a member of the International Union of Laboratories and Experts in Construction Materials, a member of the Systems and Structures (RILEM) technical committees on alkali-activated materials, an editorial board member for three international journals, the 2001 winner of the State Prize of Ukraine in the field of Science and Engineering. Dr. Puertas is a Research Professor for the Spanish National Research Council (CSIC), at the Eduardo Torroja Institute of Construction Sciences. She has a PhD in Chemical Sciences from the Autonomous University of Madrid. Her research focuses on the physical and chemical properties of Portland cement and its manufacturing process; the use of alternative materials (waste and industrial by-products) in the manufacture of cement and concrete; the development of new, more eco-sustainable types of cement; the deterioration processes of a variety of cement, mortars and concrete; the role of admixtures on the properties and behavior of concrete. She is a prolific author, has led many national and international R&D projects, and holds four patents. She is the Director of the CSIC High Specialization postgraduate course in Cement Chemistry and has been appointed as honorary EiC of the international scientific journal Construction Materials (CSIC) and as the Associate Editor of the Cement and Concrete Composites (Elsevier). In 2010, she received the award for 'Best Scientific Career' by the Spanish Society of Materials (SOCIEMAT). Dr. Schroeyers is Full Professor at Hasselt University, Belgium. He is the head of the educational management team for nuclear technology and a researcher at the Nuclear Technological Centre (NuTeC) of the Research Institute for Environmental Sciences (CMK). He completed a PhD in Chemistry at KU Leuven in 2005. His research, at the intersection of chemistry, materials science, and nuclear engineering, focuses on developing suitable management options for radiological residues., particularly on methods and protocols for characterization of natural and artificial radionuclides, radiological monitoring, nuclear decommissioning, recycling and immobilization of radiological wastes and residues in cementitious binders and concrete. He was the chair of the COST Action NORM4Building (2014-2017) and is the co-founder of the European NORM Association (2017) and the SHARE (Social Sciences and Humanities in Ionizing Radiation Research) network. He is a member of the central management team for the Belgian Society for Radiation Protection and, in 2017, edited Naturally Occurring Radioactive Materials in Construction (Elsevier).

    Innehållsförteckning

    • SECTION 1: Classification and Characterization of Radioactive Waste 1. Radioactive waste: A global concern2. Classification, testing and performance criteria for conditioning of low- and intermediate-level wastesSECTION 2: Evaluation test and performance criteria for low- and intermediate-level waste forms3. Solidification/stabilization processes using Portland cement systems: Advantages and disadvantages4. Application of cementitious materials for the systematic disposal of nuclear wastes5. Evaluation of radioactive waste immobilization using alkali-activated binders with the help of dynamic and static leachingSECTION 3: Traditional cementitious matrices6. Magnesium silicate cements for immobilization of low- and intermediate-level radioactive wastes: Properties, processes, and future directionSection 4: Alkali-activated cementitious matrices7. Immobilization of low- and intermediate-level radioactive wastes in alkali-activated cements8. Immobilization of radioactive nitrate- and borate-containing salt concentrates in an alkali-activated cementitious matrix9. Alkali-activated materials for immobilization of organic radioactive waste