School of Chemistry and the Environment, Henan University of Technology, 100 Lianhua St, Gaoxin District, Zhengzhou, 450001, Henan, China.
U.S. Environmental Protection Agency, National Risk Management Research Laboratory, Cincinnati, OH, 45268, USA.
Environ Monit Assess. 2019 Jan 29;191(2):115. doi: 10.1007/s10661-019-7254-1.
This work was conducted to explore heavy metal pollution in soils in an area near lead smelters in Jiyuan City, which is one of the main lead production areas in China. Altogether, 88 topsoil samples (0-20 cm) were collected from farmlands near the Yuguang lead smelting facilities; the sampling sites were 1570 to 6388 m to the main stack of the Yuguang. Analysis of the samples indicated that (i) the ranges of total Cd and Pb concentrations were 0.81-4.30 and 64.5-435 mg kg, respectively, mean pollution indices (concentration in soil/background value, PI) were 32.8 and 9.11, respectively, and the concentrations of total Cu, Zn, and Ni were slightly higher than the background values. Mean concentrations of DTPA-extractable Cd and Pb were 0.752 and 58.7 mg kg, respectively. (ii) The total concentrations of Cd, Pb and Pb/Cd ratios of samples decreased as the distance to the main stack of the Yuguang increased. Abnormal variations of these trends suggested these parameters of certain samples were affected by pollution sources other than the Yuguang. (iii) Judged by the results of this work, the area of the heavy metal-polluted land in Jiyuan was much greater than 115 km, a value reported by an earlier investigation. These results indicate that the soil in the study area was polluted by Cd and Pb emissions from more than one polluting sources, the variation of Cd, Pb concentration and Pb/Cd ratios of samples to the distance of the pollution source can be potentially used for pollution source identification.
这项工作旨在探究济源市某铅冶炼厂附近土壤中的重金属污染情况,该地区是中国主要的铅生产区之一。研究共采集了 88 个农田表层土壤(0-20cm)样品,这些农田位于豫光铅冶炼厂的主烟囱下风向 1570-6388m 处。结果表明:(i)土壤中 Cd 和 Pb 的总浓度范围分别为 0.81-4.30 和 64.5-435mg/kg,污染指数(PI)分别为 32.8 和 9.11,Cu、Zn 和 Ni 的浓度稍高于背景值;DTPA 可提取态 Cd 和 Pb 的浓度分别为 0.752 和 58.7mg/kg。(ii)随着与豫光主烟囱距离的增加,土壤中 Cd、Pb 总量及其与 Cd 的比值均呈降低趋势,某些样品的这些趋势出现异常,表明这些参数受到了除豫光之外的其他污染源的影响。(iii)从研究结果来看,济源市重金属污染土地的面积远大于之前调查的 115km2,这表明研究区土壤受到了多个污染源排放的 Cd 和 Pb 的污染,样品中 Cd、Pb 浓度及其与 Pb 的比值随污染源距离的变化可用于污染源识别。