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EFFECTS OF HUMIC ACID AND COMPETING CATIONS ON METAL UPTAKE BY LOLIUM PERENNE

机译:腐殖酸和竞争阳离子对PER橙的金属吸收的影响

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Within the biotic ligand model, which describes relationships between chemical speciation and metal binding at an organism's surface, multicomponent (long-term) metal uptake by plants has seldom been studied. In the present work, we exposed perennial ryegrass to nutrient solutions with two levels of Cd, Cu, Ni, Pb, and Zn (1 and 0.1 μM) and with or without 30 mg/L of humic acid. Iron and Mn concentrations were constant over all treatments. The hypothesis tested was that humic acid lowers the free and labile metal concentration and, therefore, reduces the metal uptake and, finally, the metal content of the plant. The free metal ion concentrations in the nutrient solutions were measured by the Donnan membrane technique and labile metal concentrations by diffusive gradients in thin-films. The metal content of the shoots depends on the metal content of the roots. The metal content of the roots is a function of the adsorption of metals on the root surface. In a multicomponent system at metal concentrations of 1 μM, humic acid decreased Cu, Pb, and Fe adsorption at the root surface, but it increased Cd, Zn, and Mn adsorption at the root surface. Complexation of cations such as Cu, Pb, and Fe with high affinity for (dissolved) organic matter may lead to increased uptake of cations with low affinity for organic matter (Ni, Zn, and Cd) because of competition between cations at the root surface. The results suggest that competition between metal ions can play a major role in multicomponent metal uptake, which has to be taken into account during risk assessments of metal-polluted soils.
机译:在描述化学形态与生物体表面金属结合之间关系的生物配体模型中,很少研究植物对多组分(长期)金属的吸收。在目前的工作中,我们将多年生黑麦草暴露于营养液中,其中镉,铜,镍,铅和锌的含量分别为1和0.1μM,含或不含30 mg / L腐殖酸。在所有处理中,铁和锰的浓度均保持恒定。检验的假设是,腐殖酸降低了游离金属和不稳定金属的浓度,因此降低了金属吸收量,最终降低了植物的金属含量。通过Donnan膜技术测量营养液中的游离金属离子浓度,并通过薄膜中的扩散梯度测量不稳定的金属浓度。枝条的金属含量取决于根的金属含量。根的金属含量是根表面金属吸附的函数。在金属浓度为1μM的多组分系统中,腐殖酸降低了根表面对Cu,Pb和Fe的吸附,但增加了根表面对Cd,Zn和Mn的吸附。对(溶解的)有机物具有高亲和力的阳离子(如Cu,Pb和Fe)的络合可能会导致根系表面阳离子之间的竞争,从而增加对有机物(Ni,Zn和Cd)具有低亲和力的阳离子的吸收。结果表明,金属离子之间的竞争可在多组分金属吸收中发挥主要作用,在金属污染土壤的风险评估中必须考虑到这一点。

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