Metal uptake by xerothermic plants introduced into Zn-Pb industrial wastes

2010
journal article
article
31
cris.lastimport.scopus2024-04-24T03:52:02Z
cris.lastimport.wos2024-04-09T20:38:01Z
dc.abstract.enThe dusty surfaces of post-flotation wastes contain high concentrations of toxic compounds and spread widely if appropriate vegetation is not introduced. It has been previously established that effective restoration of such waste areas are best met by xerothermic, mycorrhiza-assisted plants (Turnau et al. Plant and Soil 305:267-280, 2008). The aim of the current study was to improve phytostabilisation practices by gaining insight into the elements uptake in plants after their change of habitat. Total Reflection X-ray Fluorescence (TXRF) was employed to evaluate element concentration in the leaves of 23 plant species growing in the wild and on Zn-Pb waste. Higher levels of heavy metals (Zn, Y, As, Pb, Cu) in plants from tailings were usually accompanied by increased Ca concentration, suggesting a possible role of this element in detoxification mechanisms. Also, when compared to grassland specimens, plants from the tailings, exhibited potassium-deficiency. Thus, K-supplementation of the waste substrata should be considered to improve plant growth. Among all the introduced plants, three grass species (Melica transsilvanica, Bromus inermis, Elymus hispidus) and one legume (Anthylis vulneraria) were the most suitable for phytostabilisation. Heavy metal-accumulating properties of Verbascum thapsus need further investigation.pl
dc.affiliationWydział Biologii i Nauk o Ziemi : Instytut Nauk o Środowiskupl
dc.contributor.authorTurnau, Katarzyna - 132450 pl
dc.contributor.authorOstachowicz, Beatapl
dc.contributor.authorWojtczak, Grzegorz - 104562 pl
dc.contributor.authorAnielska, Teresa - 127133 pl
dc.contributor.authorSobczyk, Łukasz - 131966 pl
dc.date.accession2021-07-26pl
dc.date.accessioned2021-07-26T12:03:34Z
dc.date.available2021-07-26T12:03:34Z
dc.date.issued2010pl
dc.date.openaccess0
dc.description.accesstimew momencie opublikowania
dc.description.additionalBibliogr. s. 310-311pl
dc.description.number1-2pl
dc.description.physical299-311pl
dc.description.versionostateczna wersja wydawcy
dc.description.volume337pl
dc.identifier.doi10.1007/s11104-010-0527-7pl
dc.identifier.eissn1573-5036pl
dc.identifier.issn0032-079Xpl
dc.identifier.projectROD UJ / OPpl
dc.identifier.urihttps://ruj.uj.edu.pl/xmlui/handle/item/276503
dc.identifier.weblinkhttps://link.springer.com/content/pdf/10.1007/s11104-010-0527-7.pdfpl
dc.languageengpl
dc.language.containerengpl
dc.rightsUdzielam licencji. Uznanie autorstwa - Użycie niekomercyjne*
dc.rights.licenceCC-BY-NC
dc.rights.urihttps://creativecommons.org/licenses*
dc.share.typeinne
dc.subject.enphytoremediationpl
dc.subject.enheavy metalspl
dc.subject.enTXRFpl
dc.subject.enmycorrhizal plantspl
dc.subject.enapplied symbiosispl
dc.subtypeArticlepl
dc.titleMetal uptake by xerothermic plants introduced into Zn-Pb industrial wastespl
dc.title.journalPlant and Soilpl
dc.typeJournalArticlepl
dspace.entity.typePublication

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