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Projections of Chloride Concentrations in Urban Lakes Receiving Road De-icing Salt

机译:道路除冰盐中城市湖泊中氯化物浓度的投影

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摘要

The chloride concentrations of urban lakes where road de-icing salt (NaCl) is used have increased to levels that can change natural lake-mixing behavior and influence aquatic life. A zero-dimensional model was formulated to project the long-term accumulation of chloride in urban lakes receiving runoff from roads on which road salt is applied. Four model parameters and an initial concentration were obtained by calibrating the model with 5 years (2004-2008) of monthly salinity data from seven lakes in the Minneapolis/St. Paul Twin Cities Metropolitan Area of Minnesota, USA. Three of the seven lakes appear headed towards year-round volume averaged chloride concentrations above the 230-mg/L chronic standard for impairment to aquatic habitat. The two lakes with the lowest projected equilibrium concentrations of chloride have already reached equilibrium. One lake is projected to take an additional 40 years to reach equilibrium under current climate conditions and current road salt application rates. If road salt application rates are reduced in future winters, it is projected that the lakes will respond with noticeably lower chloride concentrations within 5 to 10 years. If road salt applications arerndiscontinued altogether, chloride concentrations are projected to drop to natural levels within 10 to 30 years in all seven lakes. A reduction of application rates by 50% would result in annual volumetric average chloride concentrations below the chronic standard.
机译:使用道路除冰盐(NaCl)的城市湖泊中的氯化物浓度已经增加到可以改变自然湖泊混合行为并影响水生生物的水平。建立了一个零维模型来预测城市湖泊中氯离子的长期积累,该湖泊从施用了道路盐的道路中径流而来。通过用来自明尼阿波利斯/圣保罗州七个湖的5年(2004-2008年)月度盐度数据对模型进行校准,获得了四个模型参数和初始浓度。美国明尼苏达州的保罗双子城市都会区。七个湖泊中的三个似乎朝着全年的平均氯化物体积浓度方向前进,从而使对水生生境的损害超过了230 mg / L的慢性标准。预计氯化物平衡浓度最低的两个湖泊已经达到平衡。在目前的气候条件和目前的道路盐施用量下,一个湖泊预计要花40年才能达到平衡。如果在未来的冬季减少道路盐的施用量,则预计这些湖泊将在5至10年内以明显较低的氯化物浓度做出响应。如果完全停止使用路盐,则预计所有七个湖泊中的氯化物浓度将在10至30年内降至自然水平。减少50%的施用量将导致慢性氯化物的年体积平均氯浓度低于慢性标准。

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