Construction Engineering College, Jilin University, Xi Min Zhu Street, Changchun, 130026, Jilin, China.
Engineering, Faculty of Business, Justice and Behavioural Sciences, Charles Sturt University, Panorama Avenue, Bathurst, NSW, 2795, Australia.
Environ Sci Pollut Res Int. 2018 Jul;25(19):18498-18509. doi: 10.1007/s11356-018-1990-6. Epub 2018 Apr 26.
Six traffic-emitted metals (Cr, Zn, Cu, Cd, Pb, and Ni) were determined in soil and plants for below- and aboveground parts along different distances from highway to evaluate their behavior and uptake by Carex meyeriana Kunth and Thelypteris palustris var. pubescens Fernald growing in turfy swamps. The results indicated that the different plant tissues showed significantly different levels of metal content. Nonlinear regression analysis indicated that metal contents leveled off at constant values before they decreased as the distance from the roadside increased. The high R values of the regression model indicated good fit of the exponential function applied to depict the distribution pattern of the metal elements. It was deduced that Cr, Cu, and Cd in Thelypteris palustris var. pubescens Fernald were mainly derived from the soil; Carex meyeriana Kunth and Thelypteris palustris var. pubescens Fernald absorbed Pb mainly through the stomata from atmospheric depositions; Cr, Cu, and Cd in Carex meyeriana Kunth and Zn in Thelypteris palustris var. pubescens Fernald were mainly affected by soil and atmospheric depositions. After excluding the effects of traffic, only the bioaccumulation factor of Cd (1.34) in Carex meyeriana Kunth and the translocation factor of Zn (1.13) in Thelypteris palustris var. pubescens Fernald were greater than 1, suggesting that Carex meyeriana Kunth could be a good candidate for assimilating Cd from soils and Thelypteris palustris var. pubescens Fernald could be suitable for the phytoextraction of Zn.
六种交通排放金属(Cr、Zn、Cu、Cd、Pb 和 Ni)在公路不同距离的土壤和植物地上及地下部分进行了测定,以评估它们在生长于泥炭沼泽中的苔草和毛蕨中的行为和吸收情况。结果表明,不同的植物组织表现出明显不同水平的金属含量。非线性回归分析表明,在距离路边增加导致金属含量降低之前,金属含量在恒定值上趋于平稳。回归模型的高 R 值表明,应用于描述金属元素分布模式的指数函数拟合良好。推断毛蕨中的 Cr、Cu 和 Cd 主要来自土壤;苔草和毛蕨主要通过气孔从大气沉降中吸收 Pb;苔草和毛蕨中的 Cr、Cu 和 Cd 主要受土壤和大气沉降的影响。在排除交通影响后,只有苔草中 Cd 的生物积累系数(1.34)和毛蕨中 Zn 的迁移系数(1.13)大于 1,表明苔草可以很好地从土壤中吸收 Cd,而毛蕨适合用于 Zn 的植物提取。