Distribution of rare earth elements, thorium and uranium in streams and aquatic mosses of Central Portugal

被引:0
作者
João Pratas
Paulo J. C. Favas
Mayank Varun
Rohan D’Souza
Manoj S. Paul
机构
[1] University of Coimbra,Department of Earth Sciences, Faculty of Sciences and Technology
[2] University of Trás-os-Montes e Alto Douro,School of Life Sciences and the Environment
[3] UTAD,Department of Botany
[4] St. John’s College,MARE – Marine and Environmental Sciences Centre
[5] University of Coimbra,Department of Botany
[6] Lucknow Christian Degree College,undefined
来源
Environmental Earth Sciences | 2017年 / 76卷
关键词
Mosses; Biomonitoring; Góis region;
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摘要
The distribution of 14 rare earth elements, Th and U was studied in streams of the study area at 21 sites. Aquatic mosses are known to accumulate even metabolically nonessential or toxic metals in concentrations much higher than their aqueous environment due to their unique morphology and physiology. Thus, the capacity of metal amplification in four aquatic mosses (Fontinalis squamosa, Brachythecium rivulare, Platyhypnidium riparioides and Thamnobryum alopecurum) was also evaluated as a potential bioindicator/biomonitoring tool. Thirteen REEs (0.001–2.81 μg L−1) and U were detected in the stream water. Mean content of lighter rare earth elements (LREEs) was higher than that of heavier rare earth elements (HREEs). Fourteen REEs and two actinides were detected in moss samples, including Yb and Th which were below detection level in water samples. LREE uptake (0.17–12.2 mg kg−1) was greater than HREE uptake (0.02–0.78 mg kg−1) in all mosses. Uptake of LREEs was observed in the order: B. rivulare >T. alopecurum >F. squamosa >P. riparioides and that of HREEs in the order: T. alopecurum >B. rivulare >F. squamosa >P. riparioides. Mean U content (0.68–1.62 mg kg−1) in the mosses was found in the order: B. rivulare >F. squamosa >T. alopecurum >P. riparioides. Th content ranged from 0.4 to 2.36 mg kg−1 in the order: B. rivulare >T. alopecurum >P. riparioides >F. squamosa. One-way ANOVA indicated a statistically significant difference (P ≤ 0.01) in mean concentrations of all elements (individually) in moss samples except for U. Highest bioconcentration factors of six REEs each were observed in B. rivulare (La, Ce, Sm, Eu, Tb and Dy) and T. alopecurum (Nd, Gd, Ho, Er, Tm and Lu). The highest BCFs for Pr and U were obtained in F. squamosa and P. riparioides, respectively. These species hold promise for biomonitoring studies in the future.
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  • [11] Eullaffroy P(2012), subsp. Berlin) and fungus ( Ecol Indic 18 586-301
  • [12] Cenci RM(2005)) Environ Pollut 136 293-61
  • [13] Chiarenzelli J(2009)Accumulation of uranium by aquatic plants in field conditions: potential for phytotechnologies Environ Health 8 S2-536
  • [14] Aspler L(2014)Aquaflora: a predictive model based on diatoms and macrophytes for streams water quality assessment Environ Chem Lett 12 49-208
  • [15] Dunn C(2013)Transplants of aquatic mosses as biomonitors of metals released by a mine effluent Bulgaria. Plant Biosysts 149 527-346
  • [16] Cousens B(2000)Assessing exposure, uptake and toxicity of silver and cerium dioxide nanoparticles from contaminated environments Environ Pollut 108 201-635
  • [17] Ozarko D(2012)Water pollutant monitoring with aquatic bryophytes: a review Elements 8 341-587
  • [18] Powis K(2012)Monitoring of aquatic mosses and sediments: a case study in contaminated rivers Freshw Sci 31 625-31
  • [19] Davranche M(2013)Monitoring of heavy metal deposition in Northern Italy by moss analysis Environ Nat Resour Res 3 77-55
  • [20] Gruau G(2007)Dynamics in the global market for rare earths J Radioanal Nucl Chem 271 581-20