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首页> 外文期刊>The Science of the Total Environment >Measuring and mapping the effectiveness of the European Air Quality Directive in reducing N and S deposition at the ecosystem level
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Measuring and mapping the effectiveness of the European Air Quality Directive in reducing N and S deposition at the ecosystem level

机译:测量和绘制欧洲空气质量指令在减少生态系统水平上氮和硫沉积方面的有效性

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To protect human health and the environment (namely ecosystems), international air quality protocols and guidelines, like the Gothenburg protocol (1999) and the 2001 EU Air Quality Directive (NECD), conveyed national emission ceilings for atmospheric pollutants (Directive 2001/81/EC), including the reduction of sulfur (S) and nitrogen (N) emissions by 2010. However, to what degree this expected reduction in emissions had reflections at the ecosystem level (i.e. pollutant levels reaching and impacting ecosystems and their organisms) remains unknown. Here, we used lichens as ecological indicators, together with reported air and precipitation pollutant concentrations, to determine and map the consequences of the S and N atmospheric emission's reduction, during the implementation of the 2001 Directive (in 2002 and 2011), due primarily to the industrial-sector. The study area is a mixed-land-use industrialized Mediterranean agroforest ecosystem, in southwest Europe.The reduction of S emissions (2002-2011) was reflected at the ecosystem level, as the same S-declining trend was observed in atmospheric measurement stations and lichens alike (-70%), indicating that most S deposited to the ecosystem had an industrial origin. However, this was not the case for N with a slight N-reduction near industrial facilities, but mostly N-deposition in lichens increased in areas dominated by agricultural land-uses.Taken together, these results highlight the importance of going beyond emissions estimation and modeling, to assess the success of the implementation of the NECD in lowering pollutant accumulation in living organisms and their environment. This can only be achieved by measuring pollutant deposition at the ecosystem level (e.g. living organisms). By doing so, we were able to show that the 2001 NECD was successful in reducing S concentrations from Industry, whereas N remains a challenge. Despite the small reduction in N-emissions, deposition into ecosystems did not reflect these changes as agriculture and transport sectors must reduce NH3 and NOx emissions. (C) 2018 Published by Elsevier B.V.
机译:为了保护人类健康和环境(即生态系统),国际空气质量议定书和指南(如哥德堡议定书(1999年)和2001年欧盟空气质量指令(NECD))传达了国家大气污染物的排放上限(指令2001/81 / EC),包括到2010年减少硫(S)和氮(N)的排放量。然而,这种预期的排放量减少在多大程度上反映了生态系统水平(即污染物水平到达并影响生态系统及其生物),目前尚不清楚。在这里,我们使用地衣作为生态指标,并结合报告的空气和降水污染物浓度,确定和绘制了在实施2001年指令(2002年和2011年)期间减少大气中的硫和氮的后果并作图。工业部门。该研究区域是欧洲西南部的一种混合土地利用的工业化地中海农林生态系统。在生态系统水平上反映了S排放量的减少(2002-2011年),因为在大气测量站和地衣相似(-70%),表明沉积到生态系统中的大多数S都具有工业来源。但是,在工业设施附近氮含量略有减少的情况下并非如此,但在以农业土地利用为主的地区中,地衣中的氮沉积大多增加了。这些结果加在一起说明了超越排放估算和监测的重要性。模型,以评估NECD实施在降低生物体及其环境中污染物积累方面的成功性。这只能通过在生态系统水平上测量污染物的沉积(例如活生物体)来实现。通过这样做,我们能够证明2001 NECD成功地降低了工业中的S浓度,而N仍然是一个挑战。尽管氮排放量有所减少,但由于农业和运输部门必须减少NH3和NOx排放,因此进入生态系统的沉积并未反映这些变化。 (C)2018由Elsevier B.V.发布

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