Kim Dong-Su, An Kwang-Guk, Kim Ki-Hyun
Department of Environmental Science and Engineering, Ewha Womans University, Seoul, Korea.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2003 May;38(5):839-53. doi: 10.1081/ese-120018595.
In this study, soil samples were collected at eight different regional types of Seoul City and analyzed for their physicochemical properties. In addition, the distribution of heavy metal concentrations was analyzed using samples representing both the surface and deep soil layer. The physicochemical properties analyzed for those samples included parameters such as pH, moisture content, apparent (and true) density, pore ratio, solid content, conductivity, ionic strength, total dissolved solid (TDS), total organic carbon (TOC), and total phosphorus (TP). The contents of heavy metal components contained in plant leaves were also analyzed and compared with those measured from different soil layers. Contents of Cu and Cd were highest in the DH area among eight locations investigated and Pb was higher in the surface soil samples of the GS region than any other locations. According to physicochemical properties of the surface and deep soils, acidity was higher in the surface than deep soils. Depending on the selection of treatment method between strong and weak acids, the metal concentrations were larger by 3-5 times in the strong acid than the weak acid treatments. In addition, metals were higher in the deep than in the surface soil and relative metal contents of leaf samples closely resembled those of soil samples. Results of this study suggest that the physicochemical properties of soils determined from different regional types of Seoul area exhibited a close relationship with the land use types and environmental conditions surrounding each region.
在本研究中,采集了首尔市八种不同区域类型的土壤样本,并对其理化性质进行了分析。此外,使用代表表层和深层土壤的样本分析了重金属浓度的分布。对这些样本分析的理化性质包括pH值、含水量、表观(和真实)密度、孔隙率、固体含量、电导率、离子强度、总溶解固体(TDS)、总有机碳(TOC)和总磷(TP)等参数。还分析了植物叶片中所含重金属成分的含量,并与不同土壤层中测得的含量进行了比较。在所调查的八个地点中,DH区域的铜和镉含量最高,GS区域表层土壤样本中的铅含量高于其他任何地点。根据表层和深层土壤的理化性质,表层土壤的酸度高于深层土壤。根据强酸和弱酸处理方法的选择,强酸处理中的金属浓度比弱酸处理高3至5倍。此外,深层土壤中的金属含量高于表层土壤,叶片样本的相对金属含量与土壤样本的非常相似。本研究结果表明,首尔地区不同区域类型土壤的理化性质与各区域周围的土地利用类型和环境条件密切相关。