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Long-term road salting effects on dispersion of organic matter from roadside soils into drainage water

机译:长期道路盐化对有机物从路边土壤到排水中的扩散的影响

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摘要

Sodium chloride has been utilised for decades to maintain road safety in winter and some of its detrimental impacts have been well-documented. However, research on the organic fraction of roadside soils has concentrated upon short-term salt-effects. We hypothesise that decades of past leaching and enhanced mineralisation of organic matter have reduced the concentrations of dissolved organic carbon (DOC) flushes currently occurring. We have examined the effects of salt concentration on organic matter mobilisation in soils that have already experienced varying degrees of exposure to road salting in the field over decades. Applications of salt at concentrations experienced in the field have been simulated to quantify the extent that DOC and dissolved organic nitrogen (DON) are still being mobilised for three prior salt-impact scenarios. A balance occurs between the effects on organic matter of long-term soil pH increase (due to continued cation exchange during salt exposure) which enhances its solubility and organic matter mineralisation, short-term pH suppression (due to the mobile anion effect in soil solution) which reduces its solubility, and short- and long-term sodium-induced dispersion. This now determines the influence of road salt on organic matter leaching from roadside soils and into associated drainage waters.
机译:氯化钠已经被使用了数十年,以保持冬季的道路安全,其某些有害影响已得到充分证明。但是,对路旁土壤有机成分的研究主要集中在短期盐效应上。我们假设过去数十年的浸出和有机物矿化的增加降低了目前正在发生的溶解有机碳(DOC)冲洗的浓度。我们已经研究了盐浓度对土壤中有机物动员的影响,这些土壤几十年来在田间已经经历了不同程度的道路盐分暴露。已经模拟了盐在现场的浓度下的应用,以量化DOC和溶解有机氮(DON)仍在三种先前的盐影响情景中动员的程度。长期土壤pH升高对有机物的影响之间存在平衡(由于盐接触期间持续的阳离子交换),从而增加了有机酸的溶解度和有机物矿化,短期pH抑制(由于在土壤溶液中的流动阴离子效应) )会降低其溶解度,以及钠引起的短期和长期分散。现在,这决定了路盐对从路旁土壤浸出并进入相关排水中的有机物的影响。

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