Karlsson Torbjörn, Skyllberg Ulf
Department of Forest Ecology, Swedish University of Agricultural Sciences, SE-901 83 Umeå, Sweden.
Environ Sci Technol. 2007 Jan 1;41(1):119-24. doi: 10.1021/es0608803.
Even if it is generally accepted that associations with natural organic matter (NOM) to a great extent determine the bioavailability and mobility of trace metals in soils and waters, the knowledge about the identity of NOM functional groups involved is still limited. In this study, extended X-ray absorption fine structure (EXAFS) spectroscopy was used to determine the coordination chemistry of zinc (Zn) in two organic soils (500-10,000 microg Zn g(-), pH 5.6-7.3). In both soils Zn was coordinated by a mixture of oxygen/nitrogen (O/N) and sulfur (S) ligands in the first coordination shell. In average, 0.4-0.9 S atoms were located at a distance of 2.29-2.33 angstom, well in agreement with a 4-fold coordination with thiolates (RS-) in proteins. In addition 2.7-3.7 O/N atoms were located at 1.99-2.04 angstrom. The improved merit of fit by inclusion of S atoms was shown to be significant after adjusting for the improvement caused merely by increasing the number of fitting parameters. Two second shell Zn-C distances were used in our model: 3.0-4.2 carbon (C) atoms, associated to first shell O/N, were encountered at an average distance of 2.84 amgstrom, and 0.4-0.9 C atoms, associated to first shell S, were encountered at an average distance of 3.32 angstrom. These Zn-C distances are well in agreement with distances determined in well-defined organic molecules. It is concluded that Zn forms mainly inner-sphere complexes with a mixture of 4-fold coordination with S and O/N ligands and 6-fold coordination with O ligands in organic soils.
即便人们普遍认为,与天然有机物质(NOM)的结合在很大程度上决定了土壤和水体中痕量金属的生物有效性和迁移性,但对于所涉及的NOM官能团的具体性质,人们了解仍然有限。在本研究中,扩展X射线吸收精细结构(EXAFS)光谱被用于测定两种有机土壤(锌含量为500 - 10,000微克/克,pH值为5.6 - 7.3)中锌(Zn)的配位化学。在这两种土壤中,锌在第一配位层中均由氧/氮(O/N)和硫(S)配体的混合物配位。平均而言,0.4 - 0.9个硫原子位于2.29 - 2.33埃的距离处,这与蛋白质中硫醇盐(RS-)的四重配位情况高度吻合。此外,2.7 - 3.7个O/N原子位于1.99 - 2.04埃处。在仅仅因增加拟合参数数量而导致的改进得到调整之后,纳入硫原子所带来的拟合优度的提高被证明是显著的。我们的模型中使用了两个第二壳层的Zn - C距离:与第一壳层O/N相关的3.0 - 4.2个碳(C)原子,平均距离为2.84埃;与第一壳层S相关的0.4 - 0.9个C原子,平均距离为3.32埃。这些Zn - C距离与在明确界定的有机分子中测定的距离高度吻合。可以得出结论,在有机土壤中,锌主要形成内球络合物,其与硫和O/N配体的四重配位以及与氧配体的六重配位的混合物相结合。