Instituto de Ciencias Agrarias, Centro de Ciencias Medioambientales, Consejo Superior de Investigaciones Científicas, Serrano 115 dpdo., 28006 Madrid, Spain.
Chemosphere. 2010 May;79(8):844-9. doi: 10.1016/j.chemosphere.2010.02.054. Epub 2010 Mar 19.
The purposes of this study were to determine the Cu(II) binding behavior of humic acids (HAs) isolated from biosolid compost (BI), leonardite (LE), a metal-contaminated soil, and the soil remediated with either BI or LE in relation to their structural properties, and to explore the role exerted by the HA fractions in controlling soil Cu(II) bioavailability. Potentiometric titrations at pH 5 and ionic strength 0.1M and the Langmuir model were used to obtain the Cu(II) complexing capacity of the HAs examined and the conditional stability constant of the Cu(II)-HA complexes. The Cu(II) complexing capacity increased as the content of acidic ligands, especially COOH groups, aromaticity, and humification degree increased, following the order BI-HA<BI-amended soil HAs<unamended soil HA<LE-amended soil HAs<LE-HA. In contrast, the conditional stability constant of Cu(II)-HA complexes increased in the opposite order, probably due to an increased chelating effect. Compared to LE, amendment with BI was slightly more effective in decreasing soil CaCl(2)-extractable Cu content. The results obtained suggested that the pH of the soil-amendment system is the most important chemical property governing Cu(II) solubility and bioavailability in metal-contaminated soils remediated with BI and LE, although soil organic matter and the HA fraction may also be important factors. In particular, binding sites formed by N-, S-, and O-containing acidic functional moieties in HAs may play an important role in the Cu(II) behavior.
本研究旨在确定生物固体堆肥(BI)、褐煤(LE)、受金属污染的土壤以及用 BI 或 LE 修复的土壤中分离出的腐殖酸(HA)的 Cu(II) 结合行为,与它们的结构特性有关,并探讨HA 分数在控制土壤 Cu(II)生物有效性方面所发挥的作用。在 pH 5 和离子强度 0.1M 下进行电位滴定和 Langmuir 模型,以获得所研究的 HAs 的 Cu(II)络合容量和 Cu(II)-HA 络合物的条件稳定常数。随着酸性配体(特别是 COOH 基团)、芳香度和腐殖化程度的增加,Cu(II)络合容量增加,顺序为 BI-HA<BI 改良土壤 HA<未改良土壤 HA<LE 改良土壤 HA<LE-HA。相比之下,Cu(II)-HA 配合物的条件稳定常数则相反地增加,这可能是由于螯合作用增强的缘故。与 LE 相比,BI 的添加略微更有效地降低了土壤中 CaCl2 可提取的 Cu 含量。研究结果表明,尽管土壤有机质和 HA 分数也可能是重要因素,但在 BI 和 LE 修复的受金属污染土壤中,土壤-添加系统的 pH 是控制 Cu(II)溶解度和生物有效性的最重要化学性质。特别是,HA 中含 N、S 和 O 的酸性官能团形成的结合位点可能在 Cu(II)行为中发挥重要作用。