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加拿大森林不同尺度臭氧暴露采样:一些案例研究。

Sampling ozone exposure of Canadian forests at different scales: some case studies.

作者信息

Cox R M, Malcolm J W, Hughes R N, Williams T P

机构信息

Natural Resources Canada-Canadian Forest Service, Atlantic Forestry Centre, Fredericton, N.B.

出版信息

ScientificWorldJournal. 2001 Dec 6;1:823-35. doi: 10.1100/tsw.2001.346.

Abstract

The use of passive samplers in extensive monitoring, such as that used in national forest health monitoring plots, indicates that these devices are able to determine both spatial and temporal differences in ozone exposure of the plots. This allows for categorisation of the plots and the potential for cause-effect analysis of certain forest health responses. Forest exposure along a gradient of air pollution deposition demonstrates large variation in accumulated exposures. The efficacy of using passive samplers for in situ monitoring of forest canopy exposure was also demonstrated. The sampler data produced weak relationships with ozone values from the nearest "continuous" monitor, even though data from colocated samplers showed strong relationships. This spatial variation and the apparent effect of elevation on ozone exposure demonstrate the importance of topography and tree canopy characteristics in plant exposure on a regional scale. In addition, passive sampling may identify the effects of local pollutant gases, such as NO, which may scavenge ozone locally only to increase the production of this secondary pollutant downwind, as atmospheric reactions redress the equilibrium between concentrations of this precursor and those of the generated ozone. The use of passive samplers at the stand level is able to resolve vertical profiles within the stand and edge effects that are important in exposure of understorey and ground flora. Recent case studies using passive samplers to determine forest exposure to ozone indicate a great potential for the development of spatial models on a regional, landscape, and stand level scale.

摘要

在广泛监测中使用被动式采样器,例如在国家森林健康监测地块中使用的采样器,表明这些设备能够确定地块臭氧暴露的空间和时间差异。这使得能够对地块进行分类,并有可能对某些森林健康反应进行因果分析。沿着空气污染沉降梯度的森林暴露显示出累积暴露的巨大差异。还证明了使用被动式采样器原位监测森林冠层暴露的有效性。采样器数据与最近的“连续”监测器的臭氧值之间的关系较弱,尽管并置采样器的数据显示出很强的关系。这种空间变化以及海拔对臭氧暴露的明显影响表明,地形和树冠特征在区域尺度上对植物暴露具有重要意义。此外,被动采样可能会识别局部污染物气体(如一氧化氮)的影响,一氧化氮可能仅在局部清除臭氧,从而增加下风方向这种二次污染物的生成,因为大气反应会重新平衡该前体与生成的臭氧浓度之间的平衡。在林分水平上使用被动式采样器能够解析林分内的垂直剖面以及对林下植物和地面植物暴露很重要的边缘效应。最近使用被动式采样器确定森林臭氧暴露的案例研究表明,在区域、景观和林分水平尺度上开发空间模型具有巨大潜力。

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