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Sánchez-Quiles, David; Marbà, Núria; Tovar-Sánchez, Antonio
Science of the total environment, 01/2017, Letnik: 576Journal Article
This study quantifies the concentration of trace metals in coastal marine macrophytes (seagrasses, Chlorophytae, Phaeophytae and Rhodophytae). We do so by compiling, from 155 peer review research articles, almost 23,000 estimates of trace metals (As, Cd, Co, Cr, Cu, Fe, Hg, Mn, Ni, Pb and Zn) contents in natural populations of marine macroalgae and seagrasses distributed worldwide. The objective was to explore the global distribution of concentrations of these metals in marine macrophytes, provide an estimate of their average and range in its tissues and to identify hotspots of coastal pollution. Our results reveal Phaeophytae as the group with the largest accumulation capacity and tolerance to elevated concentrations of metals regardless the species and the location. The mapping of geographic distribution of metal accumulation in marine macrophytes identifies some coastal areas as hotspots of trace metal contamination, where concentrations could reach levels up to 600 times higher than the mean. Display omitted •A global dataset of trace metal concentration in marine macrophyte was compiled.•Phaeophytae can accumulate elevated concentrations of metals.•Hotspots of metal contamination have been identified in coastal areas worldwide.•Hotspots are mainly caused by anthropogenic activities.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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in: SICRIS
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