Transfer of rare earth elements (REE) from natural soil to plant systems: implications for the environmental availability of anthropogenic REE
[SDE] Environmental Sciences
lanthanum
550
Environmental availability
[SDE.MCG]Environmental Sciences/Global Changes
Translocation
Emerging pollutant
15. Life on land
01 natural sciences
630
[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/Geochemistry
13. Climate action
[SDE]Environmental Sciences
Root absorption
Chemical speciation
gadolinium
0105 earth and related environmental sciences
DOI:
10.1007/s11104-012-1407-0
Publication Date:
2012-08-22T07:03:21Z
AUTHORS (7)
ABSTRACT
Rare Earth Elements (REE) are widely used to trace natural geochemical processes. They are also increasingly used by man (electronics industry, medicine, agriculture) and therefore considered as emerging pollutants. The present study documents REE mobility in non-polluted natural soil-plant systems in order to characterize their environmental availability for future anthropogenic pollution. The study is based on a field approach in non-polluted natural sites with contrasting geological environments (limestone, granite, and carbonatite) and highly variable REE contents. REE concentrations in soils do not directly reflect bedrock concentrations, but depend largely on pedogenetic processes and on the mineralogy of bedrock and soil. The soils of all sites are with respect to bedrock enriched in heavy REE. The REE uptake by plants is not primarily controlled by the plant itself, but depends on the concentration and the speciation in the soil and the adsorbed soil water pool. REE uptake by plant roots are linked with those of Fe. Roots absorb preferentially the light REE. Before translocation, REE are retained by the Casparian strip leading to much lower concentrations in the aerial parts. The transport of the REE within the xylem is associated with the general nutrient flux.
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