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Coal fly ash as a potential fixation reagent for radioactive wastes
Roy Nir Lieberman
, Uri Green
, Giora Segev
, Mehmet Polat
,
Yitzhak Mastai
, Haim Cohen
Department of Chemistry
Ariel University
Bar-Ilan University
Israel Atomic Energy Commission
Izmir Institute of Technology
Ben-Gurion University of the Negev
Research output
:
Contribution to journal
›
Article
›
peer-review
26
Scopus citations
Overview
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Keyphrases
Radioactive Waste
100%
Coal Fly Ash
100%
Fly Ash
100%
Israel
33%
Aqueous Solution
33%
Strontium
33%
Carbonate
33%
Electrostatic Interaction
33%
Radionuclides
33%
Cesium
33%
Environmental Regulation
33%
Phosphate
33%
Alkali
33%
Negatively Charged
33%
Interaction Mechanism
33%
Cerium
33%
Positively Charged
33%
Aluminate
33%
Processing Methods
33%
New Interaction
33%
Alkali Earth
33%
Acidic Waste
33%
Class F Fly Ash
33%
Oil Regeneration
33%
Ce3+
33%
Nuclear Industry
33%
Construction Industry
33%
Primary Fixation
33%
Ce4+
33%
Coal-fired Power Plant
33%
Fixation Mechanism
33%
Pozzolanic
33%
Imported Coal
33%
Sulfur Concentration
33%
Fine Precipitates
33%
Simulant
33%
Sr2+
33%
Cement Additive
33%
Low Activity
33%
Potential Utilization
33%
Silicate Anion
33%
Chemical Engineering
Silicate
100%
Cesium
100%
Alkaline Earth Metal
100%
Silicon Dioxide
100%
Radioisotope
100%
Material Science
Radioactive Waste
100%
Cerium
50%
Silicate
50%
Strontium
50%
Cesium
50%
Cement Additive
50%
Electrostatic Interaction
50%
Chemistry
Ash
100%
Radioactive Waste
100%
Electrostatic Interaction
20%
Radioisotope
20%
Alkaline Earth Metal
20%
Cesium
20%
Strontium
20%
Cerium
20%
formation
20%
Aqueous Solution
20%