分馏
同位素
同位素分馏
稳定同位素比值
锌同位素
化学
动力学同位素效应
土壤水分
平衡分馏
放射化学
锌
环境化学
地质学
氘
色谱法
物理
有机化学
量子力学
土壤科学
作者
Toshiyuki Fujii,Francis Albarède
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2012-02-17
卷期号:7 (2): e30726-e30726
被引量:74
标识
DOI:10.1371/journal.pone.0030726
摘要
Stable Zn isotopes are fractionated in roots and leaves of plants. Analyses demonstrate that the heavy Zn isotopes are enriched in the root system of plants with respect to shoots and leaves as well as the host soil, but the fractionation mechanisms remain unclear. Here we show that the origin of this isotope fractionation is due to a chemical isotope effect upon complexation by Zn malates and citrates in the aerial parts and by phosphates in the roots. We calculated the Zn isotope effect in aqueous citrates, malates, and phosphates by ab initio methods. For pH<5, the Zn isotopic compositions of the various parts of the plants are expected to be similar to those of groundwater. In the neutral to alkaline region, the calculations correctly predict that (66)Zn is enriched over (64)Zn in roots, which concentrate phosphates, with respect to leaves, which concentrate malates and citrates, by about one permil. It is proposed that Zn isotope fractionation represents a useful tracer of Zn availability and mobility in soils.
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