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首页> 外文期刊>Journal of Hydrology >Groundwater chloride response in the Highland Creek watershed due to road salt application: A re-assessment after 20years
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Groundwater chloride response in the Highland Creek watershed due to road salt application: A re-assessment after 20years

机译:高地溪流域由于施用路盐而引起的地下水氯化物响应:20年后的重新评估

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摘要

Chloride from road salt enters streams primarily through surface runoff and groundwater discharge. Monitoring of dry-weather flow chloride concentrations in the Highland Creek watershed of the eastern Greater Toronto Area indicates the presence of a previously unrecognised, dual porosity aquifer system whereby preferential flow associated with " urban karst" exerts a significant influence on baseflow chloride concentrations early in the year. A chloride mass balance undertaken annually over four successive salting seasons suggests that as much as 40% of the chloride applied as road salt enters the shallow aquifer resulting in a net accumulation of chloride and a gradual increase in mean baseflow chloride concentrations. Assuming current road salt application rates are continued, late summer baseflow chloride concentrations will reach around 505. mg/L, almost double present levels. Elevated chloride concentrations can affect the potability of water (the Canadian aesthetic drinking water quality guideline for chloride is 250. mg/L) and can also be toxic to aquatic organisms (CCME aquatic chronic toxicity guideline is 208. mg/L). Meeting these guidelines would require that the release of salt-laden runoff to the subsurface be reduced by over 50%.
机译:公路盐中的氯化物主要通过地表径流和地下水排放而进入河流。监测大多伦多地区东部高地溪流域的干燥天气中的氯化物浓度,表明存在以前未被认识的双重孔隙含水层系统,与“城市喀斯特”有关的优先流动对早期的底流氯化物浓度产生了重大影响。那一年。每年在四个连续的盐渍季节进行的氯化物质量平衡表明,多达40%的氯盐(如路盐)进入浅层含水层,导致氯化物的净积累和平均基准流氯化物浓度的逐渐增加。假设当前道路盐的施用量继续增加,夏末的底流氯化物浓度将达到505. mg / L,几乎是目前水平的两倍。氯化物浓度升高会影响水的饮用能力(加拿大氯化物审美饮用水水质准则为250. mg / L),并且也可能对水生生物有毒(CCME水生慢性毒性准则为208. mg / L)。满足这些准则要求将含盐径流向地下的释放减少50%以上。

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