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Strontium-90 pollution can be bioremediated with the green microalga Tetraselmis chui.
Segovia-Campos, Inés; Kanellakopoulos, Anastasios; Barrozo, Ivan John; Fock-Chin-Ming, Edouard; Filella, Montserrat; Fontaine, Axel Baxarias; Pallada, Stavroula; Triscone, Gilles; Perron, Karl; Ariztegui, Daniel.
Affiliation
  • Segovia-Campos I; Department of Earth Sciences, University of Geneva, 1205 Geneva, Switzerland. ines.segoviacampos@unige.ch.
  • Kanellakopoulos A; Department of Engineering, University of Applied Sciences of Western Switzerland (HES-SO), 1202 Geneva, Switzerland.
  • Barrozo IJ; Department of Engineering, University of Applied Sciences of Western Switzerland (HES-SO), 1202 Geneva, Switzerland.
  • Fock-Chin-Ming E; Department of Engineering, University of Applied Sciences of Western Switzerland (HES-SO), 1202 Geneva, Switzerland.
  • Filella M; Department F.-A. Forel for Environmental and Aquatic Sciences, University of Geneva, Boulevard Carl-Vogt 66, CH-1205 Geneva, Switzerland. Montserrat.filella@unige.ch.
  • Fontaine AB; Department of Engineering, University of Applied Sciences of Western Switzerland (HES-SO), 1202 Geneva, Switzerland.
  • Pallada S; Department of Engineering, University of Applied Sciences of Western Switzerland (HES-SO), 1202 Geneva, Switzerland.
  • Triscone G; Department of Engineering, University of Applied Sciences of Western Switzerland (HES-SO), 1202 Geneva, Switzerland.
  • Perron K; Department of Plant Sciences, Microbiology Unit, University of Geneva, 1205 Geneva, Switzerland.
  • Ariztegui D; Department of Earth Sciences, University of Geneva, 1205 Geneva, Switzerland. ines.segoviacampos@unige.ch.
Environ Sci Process Impacts ; 26(3): 622-631, 2024 Mar 20.
Article in En | MEDLINE | ID: mdl-38334136
ABSTRACT
Strontium-90 (90Sr) is an artificial radioisotope produced by nuclear fission, with a relatively long half-life of 29 years. This radionuclide is released into the environment in the event of a nuclear incident, posing a serious risk to human and ecosystem health. There is a need to develop new efficient methods for the remediation of 90Sr, as current techniques for its removal have significant technical limitations and involve high energy and economic costs. Recently, several species of green microalgae within the class Chlorodendrophyceae have been found to form intracellular mineral inclusions of amorphous calcium carbonate (ACC), which can be highly enriched in natural (non-radiogenic) Sr. As bioremediation techniques are an attractive option to address radioactive pollution, we investigated the capacity of the unicellular alga Tetraselmis chui (class Chlorodendrophyceae) to sequester 90Sr. The 90Sr uptake capacity of T. chui cells was assessed in laboratory cultures by monitoring the time course of radioactivity in the culture medium using liquid scintillation counting (LSC). T. chui was shown to effectively sequester 90Sr, reducing the initial radioactivity of the culture medium by up to 50%. Thus, this study demonstrates the potential of the microalga T. chui to be used as a bioremediation agent against 90Sr pollution.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Chlorophyta / Microalgae Limits: Humans Language: En Journal: Environ Sci Process Impacts Year: 2024 Document type: Article Affiliation country: Switzerland

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Chlorophyta / Microalgae Limits: Humans Language: En Journal: Environ Sci Process Impacts Year: 2024 Document type: Article Affiliation country: Switzerland