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首页> 外文期刊>Atmospheric chemistry and physics >Airborne hydrogen cyanide measurements using a chemical ionisation mass spectrometer for the plume identification of biomass burning forest fires
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Airborne hydrogen cyanide measurements using a chemical ionisation mass spectrometer for the plume identification of biomass burning forest fires

机译:使用化学电离质谱仪测量空气中的氰化氢,以火焰识别生物量燃烧的森林大火

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摘要

A chemical ionisation mass spectrometer (CIMS) was developed for measuring hydrogen cyanide (HCN) from biomass burning events in Canada using I~0 reagent ions on board the FAAM BAe-146 research aircraft during the BORTAS campaign in 2011. The ionisation scheme enabled highly sensitive measurements at 1 Hz frequency through biomass burning plumes in the troposphere. A strong correlation between the HCN, carbon monoxide (CO) and acetonitrile (CH_3CN) was observed, indicating the potential of HCN as a biomass burning (BB) marker. A plume was defined as being 6 standard deviations above background for the flights. This method was compared with a number of alternative plume-defining techniques employing CO and CH_3CN measurements. The 6-sigma technique produced the highest R~2 values for correlations with CO. A normalised excess mixing ratio (NEMR) of 3.68 ± 0.149 pptv ppbv~(-1) was calculated, which is within the range quoted in previous research (Hornbrook et al., 2011). The global tropospheric model STOCHEM-CRI incorporated both the observed ratio and extreme ratios derived from other studies to generate global emission totals of HCN via biomass burning. Using the ratio derived from this work, the emission total for HCN from BB was 0.92 Tg (N) yr~(-1).
机译:开发了一种化学电离质谱仪(CIMS),用于在2011年BORTAS战役期间使用FAAM BAe-146研究飞机上的I〜0试剂离子测量加拿大生物质燃烧事件中的氰化氢(HCN)。通过对流层中的生物质燃烧羽流以1 Hz频率进行灵敏的测量。观察到HCN,一氧化碳(CO)和乙腈(CH_3CN)之间有很强的相关性,表明HCN作为生物质燃烧(BB)标记物的潜力。羽被定义为航班背景以上的6个标准差。将该方法与采用CO和CH_3CN测量的多种替代羽流定义技术进行了比较。 6-sigma技术产生了与CO相关的最高R〜2值。计算得出的标准化过量混合比(NEMR)为3.68±0.149 pptv ppbv〜(-1),在先前研究中引用的范围内(Hornbrook等(2011)。全球对流层模型STOCHEM-CRI结合了观察到的比率和其他研究得出的极端比率,以通过生物质燃烧产生HCN的全球排放总量。使用从这项工作得出的比率,BB中HCN的排放总量为0.92 Tg(N)yr〜(-1)。

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