Conference Presentation (Other) FZJ-2017-00869

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Structural Characterization of Geopolymers for the Safe Disposal of the Fission Products 137Cs and 90Sr

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2016

5th International ATALANTE Conference on Nuclear Chemistry for Sustainable Fuel Cycles, ATALANTE 2016, MontpellierMontpellier, France, 5 Jun 2016 - 10 Jun 20162016-06-052016-06-10

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Abstract: Geopolymers are inorganic materials owning a high variability in structure and composition. Their resistance against heat and chemical attacks implies a high potential regarding their use as nuclear waste forms. First irradiation experiments by Lambertin et al. (J. Nuc. Mat. 2013, 443, 311-315) and Deng et al. (J. Nuc. Mat. 2015, 459, 270-275) confirmed a relatively high radiolysis resistance.Metakaolin based geopolymers are aluminosilicates with structural features of a three-dimensional network. The negative charges arising from partial substitution of tetravalent Si by trivalent Al are preferably balanced by alkaline and alkaline earth cations. Therefore a durable encapsulation and immobilization of the extremely mobile radionuclides 137Cs and 90Sr is anticipated.For structural characterization we synthesized geopolymers with varying chemical composition by mixing different metakaolin and kaolin powders with amorphous silica and alkaline solutions containing Na, K, Rb and Cs, or Ca and Sr, in different ratios, respectively. Additionally the water amount used for the syntheses was varied, as well as temperature and duration of thermal treatment during sample setting. Samples were characterized by XRD, Raman, IR and MAS-NMR spectroscopy, as well as SEM (EDX) and TG-DSC. MAS-NMR data show an evolution of the geopolymers’ structure that depends strongly on synthesis parameters and composition. Inversion recovery studies reveal two different Cs species with very similar signal positions, but different longitudinal relaxation times and therefore different magnetic vicinities. This might suggest mobile as well as immobile cation species.

Keyword(s): Materials Science (2nd)


Contributing Institute(s):
  1. Nukleare Entsorgung und Reaktorsicherheit (IEK-6)
  2. Strukturbiochemie (ICS-6)
Research Program(s):
  1. 161 - Nuclear Waste Management (POF3-161) (POF3-161)
  2. HITEC - Helmholtz Interdisciplinary Doctoral Training in Energy and Climate Research (HITEC) (HITEC-20170406) (HITEC-20170406)

Appears in the scientific report 2016
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 Record created 2017-01-24, last modified 2024-07-12