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Chemical contamination along the Mediterranean French coast using Posidonia oceanica (L.) Delile above-ground tissues: a multiple trace element study

机译:使用海洋波塞冬草(L.)在地上的组织中对法国地中海沿岸的化学污染:多微量元素研究

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摘要

Levels of Be, Al, V, Mn, Co, As, Se, Mo, Ag, Sn, Sb, Bi as well as of Cr, Fe, Ni, Cu, Zn, Cd and Pb in Posidonia oceanica (L.) Delile from the Mediterranean French coast were analysed using DRC ICP-MS. The first twelve elements have not been well studied and can be considered to be potential pollutants as a result of potentially increased levels resulting from anthropogenic activities. Spatial variation and/or compartmentalization were found for all trace elements. Except for Al, Cr, Fe, Cu and Ag, most trace elements were preferentially accumulated in photosynthetic tissues, suggesting uptake from the water column. Moreover, for Be, V, Mn, Co, Ni, As, Mo, Sb, Sn and Pb, adult leaves had higher levels than intermediate leaves, suggesting low kinetics of accumulation. Levels in the third intermediate leaf were representative of the average levels of the integral shoot, and thus can be used alone in chemical biomonitoring. For most of the twelve little-studied trace elements, the background levels of the northwestern Mediterranean Sea can be measured, and their spatial variation can be related to anthropogenic activities. Levels of the seven widely studied trace elements seem to decrease or stabilize over time, probably due to their reduced anthropogenic use. These observations show that P. oceanica is a sensitive bioindicator for the monitoring of chemical contamination of a large number of trace elements.
机译:大洋波西多尼亚Deli中Be,Al,V,Mn,Co,As,Se,Mo,Ag,Sn,Sb,Bi的含量以及Cr,Fe,Ni,Cu,Zn,Cd和Pb的含量使用DRC ICP-MS对来自法国地中海沿岸的烟叶进行了分析。前十二种元素尚未得到充分研究,由于人为活动可能导致其含量增加,因此可以认为是潜在污染物。发现所有痕量元素的空间变化和/或分隔。除铝,铬,铁,铜和银外,大多数微量元素优先积累在光合组织中,表明从水柱吸收。此外,对于Be,V,Mn,Co,Ni,As,Mo,Sb,Sn和Pb,成年叶片的含量高于中间叶片,这表明蓄积动力学较低。第三中间叶中的水平代表了整枝的平均水平,因此可以单独用于化学生物监测。对于十二种很少研究的微量元素中的大多数,可以测量西北地中海的背景水平,其空间变化可能与人为活动有关。七个被广泛研究的微量元素的水平似乎随着时间的流逝而下降或稳定,这可能是由于其减少的人为使用。这些观察结果表明,海洋假单胞菌是用于监测大量痕量元素化学污染的灵敏生物指示剂。

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