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Quantitative Characterization of Emissions from Biomass Burning using Remote Sensing Measurements

机译:使用遥感测量从生物质燃烧的排放的定量表征

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We present a new method for deriving total emissions estimates from large vegetation fires using satellite-based measurements of aerosol optical depth. This method is based upon simultaneous measurements of total column amounts of trace gases and aerosol optical depth of the atmosphere through smoke plumes from Australian fires. These measurements were derived from ground-based solar remote sensing spectrometers in the infrared and UV-visible spectral regions and also provide emission ratios that may be used in more conventional bottom-up estimates of total emissions. Measurements of emissions from Australian forest fires are relatively sparse given the significance of this source to the global emissions budget from biomass burning. Additional measurements of emission ratios of a number of trace gases have been made using open-path FTIR measurements through smoke plumes from hazard reduction burns in New South Wales.
机译:我们介绍了使用基于卫星光学深度的卫星测量来导出大型植被火灾的总排放估计的新方法。该方法基于通过来自澳大利亚火灾的烟雾羽毛的大气的总柱量和气溶胶光学深度的总柱量的同时测量。这些测量来自红外和UV可见光谱区域中的基于地基的太阳遥感光谱仪,并且还提供了可以在更传统的总排放估计中使用的发射比。澳大利亚森林火灾的排放测量相对稀少,因为这一来源从生物量燃烧的全球排放预算的重要性鉴于全球排放预算。已经使用新南威尔士州的危险减少燃烧的烟雾羽毛进行了多种痕量气体的排放比的额外测量。

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