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Application of a GC-ECD for measurements of biosphere-atmosphere exchange fluxes of peroxyacetyl nitrate using the relaxed eddy accumulation and gradient method

机译:应用GC-ECD测量松弛涡流累积和梯度法测定硝酸过氧乙酰的生物圈 - 大气交换通量

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摘要

Peroxyacetyl nitrate (PAN) may constitute a significant fraction of reactive nitrogen in the atmosphere. Current knowledge about the biosphere-atmosphere exchange of PAN is limited, and only few studies have investigated the deposition of PAN to terrestrial ecosystems. We developed a flux measurement system for the determination of biosphere-atmosphere exchange fluxes of PAN using both the hyperbolic relaxed eddy accumulation (HREA) method and the modified Bowen ratio (MBR) method. The system consists of a modified, commercially available gas chromatograph with electron capture detection (GC-ECD, Meteorologie Consult GmbH, Germany). Sampling was performed by trapping PAN onto two pre-concentration columns; during HREA operation one was used for updraft and one for down-draft events, and during MBR operation the two columns allowed simultaneous sampling at two measurement heights. The performance of the PAN flux measurement system was tested at a natural grassland site, using fast-response ozone (O-3) measurements as a proxy for both methods. The measured PAN fluxes were comparatively small (daytime PAN deposition was on average -0.07 nmolm(-2) s(-1)) and, thus, prone to significant uncertainties. A major challenge in the design of the system was the resolution of the small PAN mixing ratio differences. Consequently, the study focuses on the performance of the analytical unit and a detailed analysis of errors contributing to the overall uncertainty. The error of the PAN mixing ratio differences ranged from 4 to 15 ppt during the MBR and between 18 and 26 ppt during the HREA operation, while during daytime measured PAN mixing ratios were of similar magnitude. Choosing optimal settings for both the MBR and HREA method, the study shows that the HREA method did not have a significant advantage towards the MBR method under well-mixed conditions as was expected.
机译:过氧乙酰硝酸盐(PAN)可能构成大气中活性氮的重要组成部分。关于PAN的生物圈-大气交换的当前知识是有限的,只有很少的研究调查了PAN在陆地生态系统中的沉积。我们开发了一种通量测量系统,用于使用双曲线松弛涡流累积(HREA)方法和改进的Bowen比(MBR)方法确定PAN的生物圈-大气交换通量。该系统由带有电子捕获检测功能的改良型商用气相色谱仪(GC-ECD,德国Meteorologie Consult GmbH)组成。通过将PAN捕集到两个预浓缩柱上进行采样。在HREA操作中,一根用于上升气流,另一根用于下降气流事件,而在MBR操作期间,两根色谱柱可以在两个测量高度同时取样。 PAN通量测量系统的性能是在天然草原上进行测试的,使用快速响应臭氧(O-3)测量作为这两种方法的替代。测得的PAN通量相对较小(白天的PAN沉积平均为-0.07 nmolm(-2)s(-1)),因此容易出现较大的不确定性。系统设计中的主要挑战是解决PAN混合比例差异小的问题。因此,本研究着重于分析单元的性能以及对导致总体不确定性的误差的详细分析。 PAN混合比差异的误差在MBR期间为4至15 ppt,在HREA操作期间为18至26 ppt,而在白天,所测量的PAN混合比具有相似的大小。选择MBR和HREA方法的最佳设置,研究表明,在预期的充分混合条件下,HREA方法相对于MBR方法没有明显的优势。

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