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首页> 外文期刊>International Journal of Environmental Research and Public Health >Influence of Traffic Activity on Heavy Metal Concentrations of Roadside Farmland Soil in Mountainous Areas
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Influence of Traffic Activity on Heavy Metal Concentrations of Roadside Farmland Soil in Mountainous Areas

机译:交通活动对山区路边农田土壤重金属含量的影响

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Emission of heavy metals from traffic activities is an important pollution source to roadside farmland ecosystems. However, little previous research has been conducted to investigate heavy metal concentrations of roadside farmland soil in mountainous areas. Owing to more complex roadside environments and more intense driving conditions on mountainous highways, heavy metal accumulation and distribution patterns in farmland soil due to traffic activity could be different from those on plain highways. In this study, design factors including altitude, roadside distance, terrain, and tree protection were considered to analyze their influences on Cu, Zn, Cd, and Pb concentrations in farmland soils along a mountain highway around Kathmandu, Nepal. On average, the concentrations of Cu, Zn, Cd, and Pb at the sampling sites are lower than the tolerable levels. Correspondingly, pollution index analysis does not show serious roadside pollution owing to traffic emissions either. However, some maximum Zn, Cd, and Pb concentrations are close to or higher than the tolerable level, indicating that although average accumulations of heavy metals pose no hazard in the region, some spots with peak concentrations may be severely polluted. The correlation analysis indicates that either Cu or Cd content is found to be significantly correlated with Zn and Pb content while there is no significant correlation between Cu and Cd. The pattern can be reasonably explained by the vehicular heavy metal emission mechanisms, which proves the heavy metals’ homology of the traffic pollution source. Furthermore, the independent factors show complex interaction effects on heavy metal concentrations in the mountainous roadside soil, which indicate quite a different distribution pattern from previous studies focusing on urban roadside environments. It is found that the Pb concentration in the downgrade roadside soil is significantly lower than that in the upgrade soil while the Zn concentration in the downgrade roadside soil is marginally higher than in the upgrade soil; and the concentrations of Cu and Pb in the roadside soils with tree protection are significantly lower than those without tree protection. However, the attenuation pattern of heavy metal concentrations as a function of roadside distance within a 100 m range cannot be identified consistently.
机译:交通活动中的重金属排放是路边农田生态系统的重要污染源。但是,很少进行过研究来研究山区路边农田土壤中重金属的浓度。由于山区公路的路边环境更加复杂,驾驶条件更加紧张,交通活动导致的农田土壤中重金属的积累和分布方式可能与普通公路不同。在这项研究中,考虑了包括海拔,路边距离,地形和树木保护在内的设计因素,以分析它们对尼泊尔加德满都附近山区公路沿线农田土壤中Cu,Zn,Cd和Pb浓度的影响。平均而言,采样点处的铜,锌,镉和铅的浓度低于容许水平。相应地,污染指数分析也没有显示由于交通排放造成的严重路边污染。但是,一些最大的Zn,Cd和Pb浓度接近或高于可忍受的水平,这表明尽管该区域中重金属的平均积累没有危害,但某些具有峰值浓度的斑点可能会受到严重污染。相关分析表明,发现Cu或Cd含量与Zn和Pb含量显着相关,而Cu和Cd之间没有显着相关性。车辆重金属的排放机理可以合理地解释这种模式,证明了交通污染源中重金属的同源性。此外,独立因素显示出对山区路旁土壤中重金属浓度的复杂相互作用影响,这表明与以往针对城市路旁环境的研究相比,分布模式存在很大差异。结果发现,下坡路旁土壤中的Pb浓度明显低于改良土壤,而下坡路旁土壤中的Zn浓度略高于改良土壤。有树保护的路旁土壤中的铜和铅的含量明显低于无树保护的土壤中的铜和铅的含量。但是,不能始终确定重金属浓度的衰减模式与100 m范围内路边距离的关系。

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