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Intra-ring variability of Cr As Cd and Pb in red oak revealed by secondary ion mass spectrometry: Implications for environmental biomonitoring

机译:二次离子质谱揭示红橡中CrAsCd和Pb的环内变异性:对环境生物监测的意义

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摘要

Reconstructing the history of ambient levels of metals by using tree-ring chemistry is controversial. This controversy can be resolved in part through the use of selective microanalysis of individual wood cells. Using a combination of instrumental neutron activation analysis and secondary ion mass spectrometry, we have observed systematic inhomogeneity in the abundance of toxic metals (Cr, As, Cd, and Pb) within annual growth rings of Quercus rubra (red oak) and have characterized individual xylem members responsible for introducing micrometer-scale gradients in toxic metal abundances. These gradients are useful for placing constraints on both the magnitude and the mechanism of heavy metal translocation within growing wood. It should now be possible to test, on a metal-by-metal basis, the suitability of using tree-ring chemistries for deciphering long-term records of many environmental metals.
机译:通过使用树木年轮化学来重建金属的环境水平的历史是有争议的。可以通过对单个木细胞进行选择性微分析来部分解决这一争议。通过使用仪器中子活化分析和二次离子质谱技术的结合,我们已经观察到栎属(红栎)年生环内有毒金属(Cr,As,Cd和Pb)的含量存在系统性的不均匀性,并具有特征性木质部成员负责在有毒金属丰度中引入微米级梯度。这些梯度对于限制正在生长的木材中重金属易位的大小和机理都非常有用。现在应该可以逐个金属地测试使用树环化学方法解密许多环境金属的长期记录的适用性。

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