...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Intercomparison of oxygenated volatile organic compound measurements at the SAPHIR atmosphere simulation chamber
【24h】

Intercomparison of oxygenated volatile organic compound measurements at the SAPHIR atmosphere simulation chamber

机译:含氧挥发性有机的相互比较复合测量SAPHIR氛围仿真室

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents results from the first large-scale in situ intercomparison of oxygenated volatile organic compound (OVOC) measurements. The intercomparison was conducted blind at the large (270 m3) simulation chamber, Simulation of Atmospheric Photochemistry in a Large Reaction Chamber (SAPHIR), in Jülich, Germany. Fifteen analytical instruments, representing a wide range of techniques, were challenged with measuring atmospherically relevant OVOC species and toluene (14 species, C1 to C7) in the approximate range of 0.5–10 ppbv under three different conditions: (1) OVOCs with no humidity or ozone, (2) OVOCs with humidity added (r.h. ≈ 50%), and (3) OVOCs with ozone (≈60 ppbv) and humidity (r.h. ≈ 50%). The SAPHIR chamber proved to be an excellent facility for conducting this experiment. Measurements from individual instruments were compared to mixing ratios calculated from the chamber volume and the known amount of OVOC injected into the chamber. Benzaldehyde and 1-butanol, compounds with the lowest vapor pressure of those studied, presented the most overall difficulty because of a less than quantitative transfer through some of the participants' analytical systems. The performance of each individual instrument is evaluated with respect to reference values in terms of time series and correlation plots for each compound under the three measurement conditions. A few of the instruments performed very well, closely matching the reference values, and all techniques demonstrated the potential for quantitative OVOC measurements. However, this study showed that nonzero offsets are present for specific compounds in a number of instruments and overall improvements are necessary for the majority of the techniques evaluated here.
机译:本文从第一个结果大型原位含氧的相互比较挥发性有机化合物(OVOC)测量。的进行了相互比较盲目大(270立方米)模拟,模拟的大气光化学反应室(SAPHIR),德国j。分析仪器,代表广泛与测量技术的挑战气压上相关OVOC物种和甲苯(14种,C1 C7)近似范围-10年0.5 ppbv在三种不同条件下:(1) OVOCs没有湿度和臭氧、(2)OVOCs添加了湿度(r.h.合著≈50%),和(3)OVOCs与臭氧(≈60 ppbv)和湿度(r.h.合著≈50%)。SAPHIR室被证明是一个优秀的设施进行这个实验。从个人仪器测量而混合比率的计算室体积和已知OVOC注入室。1-butanol化合物最低的蒸汽压力的研究,提出了最多因为不到整体困难通过一些定量转移参与者的分析系统。每个仪器的评估参考价值的时间为每个化合物系列和相关情节在三个测量条件下。执行的工具很好,匹配的参考价值,所有技术证明了量化OVOC潜力测量。非零补偿存在的特定化合物在许多仪器和整体多数的改进是必要的这里的技术评估。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号