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Effect of long-term changes in soil chemistry induced by road salt applications on N-transformations in roadside soils

机译:道路施用盐分引起的土壤化学长期变化对路边土壤N转化的影响

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Of several impacts of road salting on roadside soils, the potential disruption of the nitrogen cycle has been largely ignored. Therefore the fates of low-level ammonium-N and nitrate-N inputs to roadside soils impacted by salting over an extended period (decades) in the field have been studied. The use of road salts disrupts the proportional contributions of nitrate-N and ammonium-N to the mineral inorganic fraction of roadside soils. It is highly probable that the degree of salt exposure of the soil, in the longer term, controls the rates of key microbial N transformation processes, primarily by increasing soil pH. Additional influxes of ammonium-N to salt-impacted soils are rapidly nitrified therefore and, thereafter, increased leaching of nitrate-N to the local waterways occurs, which has particular relevance to the Water Framework Directive. The results reported are important when assessing the fate of inputs of ammonia to soils from atmospheric pollution.
机译:在道路盐化对路旁土壤的若干影响中,氮循环的潜在破坏已被大大忽略。因此,在田间研究了长期(数十年)盐分影响下路边土壤中低水平铵态氮和硝态氮输入的命运。道路盐的使用破坏了硝酸盐氮和铵态氮对路旁土壤矿物无机部分的比例贡献。从长远来看,很可能土壤盐分的暴露程度主要通过提高土壤pH值来控制关键微生物氮转化过程的速率。因此,铵态氮向盐受影响的土壤中大量涌入,因此很快被硝化,此后,硝态氮向当地水道的浸出增加,这与《水框架指令》特别相关。报告的结果对于评估大气污染向土壤中输入氨的命运非常重要。

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