Published 2017 | Version v1
Journal article

Removal of uranium (VI) from nuclear effluents onto alumino-phosphate and silico-alumino-phosphate molecular sieves

  • 1. Department of Management and Treatment of Radioactive Waste, Nuclear Safety Division and Radioprotection, Nuclear Research Center of Draria, BP 43, Sebala 16050, Draria, Algiers, (Algeria)
  • 2. Laboratory of Science in Industrial Process Engineering, University of Sciences and Technology Houari Boumediene, USTHB, BP 32, 16111 El-Alia, Algiers, (Algeria)
  • 3. Engineering Division of Processes and Materials, Nuclear Research Center of Draria, BP 43, Sebala 16050, Draria, Algiers, (Algeria)

Description

Alumino-phosphate and silico-alumino-phosphate molecular sieves with both five (AFI) and eleven (AEL) type structures are synthesized by hydrothermal crystallization at 473 K, using tripropylamine and dipropylamine as a structure-directing template. The as-prepared AFI and AEL sieves are characterized and then assessed as sorbents for uranium (VI) from radioactive effluents. The sorption process is used to reduce the volumes of effluents and convert them into a stable solid waste. The batch experimental studies are carried out to evaluate the AEL and AFI structure effect on the removal of uranium. The AlPO4-5, SAPO-5, AlPO4-11 and SAPO-11 are applied to radioactive effluents with different activities obtained from Nuclear Research Center of Draria, Algeria. Important decontamination factor values are obtained for AFI sorbents. Thermodynamic parameters, namely, the enthalpy (ΔH), entropy (ΔS) and free energy (ΔG) for each sorption process are calculated. The collected results indicated that sorbents are effective materials for the removal of uranium (VI) ions, the sorbent with AFI structure being a highly effective material for the removal of uranium (VI) ions from nuclear effluents. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1016/j.crci.2017.01.004

Additional details

Identifiers

Publishing Information

Journal Title
Comptes Rendus. Chimie
Journal Volume
20
Journal Issue
no.7
Journal Page Range
p. 704-709
ISSN
1631-0748

Optional Information

Notes
30 refs.