Microscopic biomineralization processes and Zn bioavailability: a synchrotron-based investigation of Pistacia lentiscus L. roots

Author:

De Giudici G.,Medas D.,Meneghini C.,Casu M. A.,Gianoncelli A.,Iadecola A.,Podda S.,Lattanzi P.

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine

Reference47 articles.

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2. Aversa G, Balassone G, Boni M, Amalfitano (2002) Themineralogy of the “Calamine” ores in SW Sardinia (Italy): preliminary results. Period Mineral 71:201–218

3. Bacchetta G, Cao A, Cappai G, Carucci A, Casti M, Fercia ML, Lonis R, Mola F (2012) A field experiment on the use of Pistacia lentiscus L. and Scrophularia canina L. subsp. bicolor (Sibth. Et Sm.) Greuter for the phytoremediation of abandoned mining areas. Plant Biosyst 146:1054–1063

4. Bacchetta G, Cappai G, Carucci A, Tamburini E (2015) Use of native plants for the remediation of abandoned mine sites in Mediterranean semiarid environments. Bull Environ Contam Toxicol. doi: 10.1007/s00128-015-1467-y

5. Baker AJM (1981) Accumulators and excluders strategies in the response of plants to heavy metals. J Plant Nutr 3:643–654

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