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Ground-based remote sensing of an elevated forest fire aerosol layer at Whistler, BC: implications for interpretation of mountaintop chemistry

机译:惠斯勒,公元前林德勒升高的森林火灾气溶胶层的遥感:对山顶化学解释的影响

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On 30 August 2009, intense forest fires in interior British Columbia (BC) coupled with winds from the east and northeast resulted in transport of a broad forest fire plume across southwestern BC. The physico-chemical and optical characteristics of the plume as observed from Saturna Island (AERONET), CORALNet-UBC and the Whistler Mountain air chemistry facility were consistent with forest fire plumes that have been observed elsewhere in continental North America. However, the importance of three-dimensional transport in relation to the interpretation of mountaintop chemistry observations is highlighted on the basis of deployment of both a CL31 ceilometer and a single particle mass spectrometer (SPMS) in a mountainous setting. The SPMS is used to identify the biomass plume based on levoglucosan and potassium markers. Data from the SPMS are also used to show that the biomass plume was correlated with nitrate, but not correlated with sulphate or sodium. This study not only provides baseline measurements of biomass burning plume physico-chemical characteristics in western Canada, but also highlights the importance of lidar remote sensing methods in the interpretation of mountaintop chemistry measurements.
机译:2009年8月30日,内部不列颠哥伦比亚省(BC)的强烈森林火灾与东部和东北的风相结合,导致跨国公司西南部的广阔森林火灾流量运输。从Saturna岛(AERONET),Coralnet-UBC和惠斯勒山空气化学设施观察到的羽流的物理化学和光学特性与北美洲其他地方观察到的森林火灾羽毛一致。然而,基于山区设置的CL31 CEILOMETER和单个粒子质谱仪(SPM)的部署,突出了三维传输与山顶化学观察的重要性。 SPMS用于识别基于左葡聚糖和钾标记物的生物质羽状。来自SPM的数据也用于表明生物质羽流与硝酸盐相关,但与硫酸盐或钠不相关。本研究不仅为加拿大西部燃烧羽毛物理化学特性提供了基线测量,而且凸显了LIDAR遥感方法在解释山顶化学测量中的重要性。

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