Ambashta, R D and Alex, T C and Single, R and Sahoo, D P and Sarkar, P S and Bajpai, R K and Shivakumar, Y C and Manohar, S and Kumar , Sanjay (2024) Evaluation of Different Fly Ash-Blast Furnace Slag Formulations for Design of Geopolymers in Radioactivity Disposal Applications. Transactions of The Indian Ceramic Society, 83(3) . pp. 178-187.
PDF (Evaluation of Different Fly Ash-Blast Furnace Slag Formulations for Design of Geopolymers in Radioactivity Disposal Applications) - Published Version Restricted to NML users only. Others may use -> 2458Kb |
Abstract
Geopolymers in radioactive waste management have in recent times gained dominance in disposal module acceptance. Here is a comparative study on formulations prepared from industrial wastes to be utilized as radionuclide disposal barriers in near surface disposal facilities (NSDFs). Different tools such as isocalorimetry, compressive strength, chemical durability were utilized for screening the formulations. Water leaching of the samples shows that the release of the ions to the leachant is minimal. Durability studies in acids (H2SO4, HCl and HNO3) show that the samples are mostly acid resistant. X-ray tomography suggests low pore volume change over a period of 2 years. The study concludes that the NSDF requirement of low permeability of water and better chemical durability criterion is met by the optimized geopolymerization formulation.
Item Type: | Article |
---|---|
Official URL/DOI: | http://10.1080/0371750X.2024.2386521 |
Uncontrolled Keywords: | Compressive strength, geopolymer, leaching, nuclear waste immobilization, x-ray tomography, alkali-activated slag, engineered barrier, durability, microstructure, dissoloution, hydration, strength,sodium |
Divisions: | Material Science and Technology |
ID Code: | 9660 |
Deposited By: | HOD KRIT |
Deposited On: | 17 Dec 2024 16:52 |
Last Modified: | 17 Dec 2024 16:52 |
Related URLs: |
Repository Staff Only: item control page