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New emission factors for Australian vegetation fires measured using open-path Fourier transform infrared spectroscopy - Part 2: Australian tropical savanna fires

机译:使用开放式傅里叶变换红外光谱测量的澳大利亚植被火灾的新排放因子 - 第2部分:澳大利亚热带大草原火灾

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摘要

Savanna fires contribute approximately 40-50% of total global annual biomass burning carbon emissions. Recent comparisons of emission factors from different savanna regions have highlighted the need for a regional approach to emission factor development, and better assessment of the drivers of the temporal and spatial variation in emission factors. This paper describes the results of open-path Fourier transform infrared (OP-FTIR) spectroscopic field measurements at 21 fires occurring in the tropical savannas of the Northern Territory, Australia, within different vegetation assemblages and at different stages of the dry season. Spectra of infrared light passing through a long (22-70 m) open-path through ground-level smoke released from these fires were collected using an infrared lamp and a field-portable FTIR system. The IR spectra were used to retrieve the mole fractions of 14 different gases present within the smoke, and these measurements used to calculate the emission ratios and emission factors of the various gases emitted by the burning. Only a handful of previous emission factor measures are available specifically for the tropical savannas of Australia and here we present the first reported emission factors for methanol, acetic acid, and formic acid for this biome. Given the relatively large sample size, it was possible to study the potential causes of the within-biome variation of the derived emission factors. We find that the emission factors vary substantially between different savanna vegetation assemblages; with a majority of this variation being mirrored by variations in the modified combustion efficiency (MCE) of different vegetation classes. We conclude that a significant majority of the variation in the emission factor for trace gases can be explained by MCE, irrespective of vegetation class, as illustrated by variations in the calculated methane emission factor for different vegetation classes using data sub-set by different combustion efficiencies. Therefore, the selection of emission factors for emissions modelling purposes need not necessarily require detailed fuel type information, if data on MCE (e. g. from future spaceborne total column measurements) or a correlated variable were available.
机译:大草原火灾占全球全球生物量燃烧碳排放量的约40-50%。最近从不同大草原区的排放因子的比较突出了对排放因子发展的需要,以及更好地评估排放因子的时间和空间变化的驱动因素。本文描述了在澳大利亚北领地的热带大草原,澳大利亚,在不同植被组合中和干燥季节的不同阶段发生的21次火灾的开放式傅里叶变换红外(OP-FTIR)光谱场测量结果。使用红外灯和现场便携式FTIR系统收集通过从这些火灾释放的地面烟雾的长(22-70米)的红外光谱的光谱。 IR光谱用于检索烟雾内存在的14种不同气体的摩尔分数,并且这些测量用于计算燃烧发出的各种气体的排放比和排放因子。仅针对澳大利亚的热带大草原的少数少数少量的排放因子措施可供选择,我们介绍该生物群系的第一个报告的甲醇,乙酸和甲酸的排放因子。鉴于相对较大的样品尺寸,可以研究衍生排放因子的生物群系内变化的潜在原因。我们发现排放因子大幅不同,在不同的大草原植被组合之间;随着不同植被类的修改燃烧效率(MCE)的变化,镜像了大部分变化。我们得出结论,痕量气体排放因子的大部分变化可以通过MCE来解释,而不管植被类如何,如不同植被类的使用不同燃烧效率的不同植被类的甲烷排放因子的变化所示。因此,如果MCE上的数据(例如,来自未来星球传播总柱测量的数据)或相关变量,则不一定需要提供详细的燃料型信息的排放因子的选择不一定需要详细的燃料类型信息。

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  • 来源
    《Atmospheric chemistry and physics》 |2014年第20期|共18页
  • 作者单位

    Kings Coll London Dept Geog Earth &

    Environm Dynam Res Grp London WC2R 2LS England;

    Univ Wollongong Sch Chem Ctr Atmospher Chem Wollongong NSW Australia;

    CSIRO Marine &

    Atmospher Sci Aspendale Vic Australia;

    CSIRO Ecosyst Sci Sustainable Agr Flagship Winnellie NT Australia;

    Charles Darwin Univ Res Inst Environm &

    Livelihoods Darwin NT 0909 Australia;

    Charles Darwin Univ Res Inst Environm &

    Livelihoods Darwin NT 0909 Australia;

    Kings Coll London Dept Geog Earth &

    Environm Dynam Res Grp London WC2R 2LS England;

    Charles Darwin Univ Res Inst Environm &

    Livelihoods Darwin NT 0909 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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