Moreno Ana Maria, Quintana Jose Ramón, Pérez Lourdes, Parra Juana G
Universidad Complutense de Madrid, Departamento de Edafologia, Facultad de Farmacia, 28040 Madrid, Spain.
Chemosphere. 2006 Jul;64(5):758-63. doi: 10.1016/j.chemosphere.2005.10.058. Epub 2005 Dec 13.
The response of ten soils of the lithic Rhodoxeralf type to the supply of lead at concentrations of 500, 1000, 2000, 3000, 4000, 5000 and 6000 mg kg-1 was examined in batch sorption-desorption tests. Lead availability in the soils was found to depend on its partitioning between the soil solution and the solid phase as reflected in adsorption isotherms. The isotherms, of the H type, were consistent with a high affinity of the sorbent for the metal, with which it forms stable inner-sphere complexes on the soil surface. Sorption-desorption tests revealed that some properties of the soils such as their pH (mean=8) and high contents in clays (particularly in kaolinite) and crystalline iron oxides significantly influence Pb sorption, the effect being especially marked at high added metal concentrations. Added lead is largely retained by crystalline iron oxides and the soil clay fraction; the pH of the soil favours the release of variably-charged sites from both. The extent of Pb desorption was small, particularly at the lowest added levels (500 and 1000 mg kg-1). Desorption increased with increasing added Pb concentration and exceeded 50% at 5000 and 6000 mg kg-1; this suggests that Pb is present not only as inner-sphere complexes, but also as outer-sphere complexes and, partly, as precipitates. The desorption isotherms consist of three segments that exhibit significant differences depending on the added Pb concentration, namely: 500-1000, 2000-4000 and 5000-6000 mg kg-1.
在批量吸附-解吸试验中,研究了十种石质强酸性土壤对浓度为500、1000、2000、3000、4000、5000和6000 mg kg-1的铅供应的响应。发现土壤中铅的有效性取决于其在土壤溶液和固相之间的分配,这在吸附等温线中有所体现。H型等温线表明吸附剂对金属具有高亲和力,金属在土壤表面形成稳定的内层配合物。吸附-解吸试验表明,土壤的一些性质,如pH值(平均值 = 8)、粘土(特别是高岭土)和结晶铁氧化物含量高,对铅的吸附有显著影响,在高添加金属浓度下这种影响尤为明显。添加的铅主要被结晶铁氧化物和土壤粘土部分保留;土壤的pH值有利于两者释放可变电荷位点。铅的解吸程度较小,特别是在最低添加水平(500和1000 mg kg-1)时。解吸随着添加铅浓度的增加而增加,在5000和6000 mg kg-1时超过50%;这表明铅不仅以内层配合物的形式存在,还以外层配合物的形式存在,部分以沉淀物的形式存在。解吸等温线由三个部分组成,根据添加的铅浓度,即500 - 1000、2000 - 4000和5000 - 6000 mg kg-1,表现出显著差异。