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1508552 
Journal Article 
The fate of arsenic, cadmium and lead in Typha latifolia: A case study on the applicability of micro-PIXE in plant ionomics 
Lyubenova, L; Pongrac, P; Vogel-Mikuš, K; Mezek, GK; Vavpetič, P; Grlj, N; Regvar, M; Pelicon, P; Schröder, P 
2013 
Yes 
Journal of Hazardous Materials
ISSN: 0304-3894
EISSN: 1873-3336 
ELSEVIER 
AMSTERDAM 
248-249 
371-378 
English 
Understanding the uptake, accumulation and distribution of toxic elements in plants is crucial to the design of effective phytoremediation strategies, especially in the case of complex multi-element pollution. Using micro-proton induced X-ray emission, the spatial distribution of Na, Mg, Al, Si, P, S, Cl, K, Ca, Mn, Fe, Zn, As, Br, Rb, Sr, Cd and Pb have been quantitatively resolved in roots and rhizomes of an obligate wetland plant species, Typha latifolia, treated with a mixture of 100μM each of As, Cd and Pb, together. The highest concentrations of As, Cd and Pb were found in the roots of the T. latifolia, with tissue-specific distributions. The As was detected in the root rhizodermis, and in the rhizome the majority of the As was within the vascular tissues, which indicates the high mobility of As within T. latifolia. The Cd was detected in the root exodermis, and in the vascular bundle and epidermis of the rhizome. The highest Pb concentrations were detected in the root rhizodermis and exodermis, and in the epidermis of the rhizome. These data represent an essential step in the resolution of fundamental questions in plant ionomics. 
IRIS
• Arsenic (Inorganic)
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     3. Hazard ID Screening
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• Inorganic Arsenic (7440-38-2) [Final 2025]
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     2. Lit Search Updates through Oct 2015
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          Considered
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          Ecology