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Estimating the Fate of De-icing Salt in a Roadside Environment by Combining Modelling and Field Observations

机译:结合建模和现场观察估算路边环境中除冰盐的命运

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Predicting the environmental effects of de-icing salt requires knowledge of the pathways taken by salt from on-road application through spread to the surroundings to deposition and fate in the roadside environment. This study described differences in chloride deposition and distribution in soil with increasing distance from the road by means of field observations and modelling. The dynamic modelling approach successfully represented the spread of de-icing salt from road to surroundings, deposition in the roadside environment and the subsequent infiltration into roadside soil. The general decrease in soil chloride content with distance from the road was described by differences in salt deposition, soil physical properties, vegetation properties and snow characteristics. The uncertainty in model predictions was highest in areas close to the road due to a complex combination of high salt deposition, snow-ploughed masses and road runoff. The exponential decline in salt deposition with distance from the road could not be justified close to the road. Different types of field investigations were applied in a calibration procedure to establish reasonable ranges for the most influential model parameters. Measured electrical resistivity reflected well the changes in simulated chloride content in soil during winter and spring when chloride concentrations were high. However, during summer or periods with low chloride concentrations the measured resistivity was substantially lower than simulated values, as it reflected the total contamination level in soil.
机译:预测除冰盐的环境影响需要了解盐从道路应用到传播到周围环境,在路边环境中的沉积和命运所采取的途径。这项研究通过野外观察和建模描述了随着距离道路距离的增加,土壤中氯化物沉积和分布的差异。动态建模方法成功地表示了除冰盐从道路到周围环境的扩散,路边环境中的沉积以及随后向路边土壤的渗透。土壤氯化物含量随距道路的距离而总体下降的原因是盐分沉积,土壤物理性质,植被性质和积雪特征的差异。由于高盐沉积,积雪和道路径流的复杂结合,模型预测的不确定性在靠近道路的区域最高。靠近道路的盐分沉积量随距离的增加呈指数级下降是不合理的。在校准程序中应用了不同类型的现场调查,以建立最有影响力的模型参数的合理范围。当氯浓度很高时,在冬季和春季,测得的电阻率很好地反映了土壤中模拟氯含量的变化。但是,在夏季或氯化物浓度较低的时期,测得的电阻率明显低于模拟值,因为它反映了土壤中的总污染水平。

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