首页> 外文期刊>Atmospheric chemistry and physics >Eddy covariance emission and deposition flux measurements using proton transfer reaction – Time of flight – Mass spectrometry (PTR-TOF-MS): Comparison with PTR-MS measured vertical gradients and fluxes
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Eddy covariance emission and deposition flux measurements using proton transfer reaction – Time of flight – Mass spectrometry (PTR-TOF-MS): Comparison with PTR-MS measured vertical gradients and fluxes

机译:使用质子转移反应测量涡流协方差发射和沉积通量–飞行时间–质谱(PTR-TOF-MS):与PTR-MS测得的垂直梯度和通量的比较

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摘要

During summer 2010, a proton transfer reaction - time of flight - mass spectrometer (PTR-TOF-MS) and a quadrupole proton transfer reaction mass spectrometer (PTR-MS) were deployed simultaneously for one month in an orange orchard in the Central Valley of California to collect continuous data suitable for eddy covariance (EC) flux calculations. The high time resolution (5 Hz) and high mass resolution (up to 5000 m/Δm) data from the PTR-TOF-MS provided the basis for calculating the concentration and flux for a wide range of volatile organic compounds (VOC). Throughout the campaign, 664 mass peaks were detected in mass-to-charge ratios between 10 and 1278. Here we present PTR-TOF-MS EC fluxes of the 27 ion species for which the vertical gradient was simultaneously measured by PTR-MS. These EC flux data were validated through spectral analysis (i.e., co-spectrum, normalized co-spectrum, and ogive). Based on inter-comparison of the two PTR instruments, no significant instrumental biases were found in either mixing ratios or fluxes, and the data showed agreement within 5% on average for methanol and acetone. For the measured biogenic volatile organic compounds (BVOC), the EC fluxes from PTR-TOF-MS were in agreement with the qualitatively inferred flux directions from vertical gradient measurements by PTR-MS. For the 27 selected ion species reported here, the PTR-TOF-MS measured total (24 h) mean net flux of 299 μg C m-2 h-1. The dominant BVOC emissions from this site were monoterpenes (m/z 81.070 +m/z 137.131 +m/z 95.086, 34 %, 102 μg Cm-2 h -1) and methanol (m/z 33.032, 18 %, 72 μgCm-2 h -1). The next largest fluxes were detected at the following masses (attribution in parenthesis): m/z 59.048 (mostly acetone, 12.2 %, 36.5 μgCm~(-2) h~(-1)), m/z 61.027 (mostly acetic acid, 11.9 %, 35.7 μg Cm~(-2) h~(-1)), m/z 93.069 (para-cymene + toluene, 4.1 %, 12.2 μgCm~(-2) h~(-1)), m/z 45.033 (acetaldehyde, 3.8 %, 11.5 μgCm~(-2) h~(-1)), m/z 71.048 (methylvinylketone + methacrolein, 2.4 %, 7.1 μgCm~(-2) h~(-1)), and m/z 69.071 (isoprene + 2-methyl- 3-butene-2-ol, 1.8 %, 5.3 μg Cm~(-2) h ~(-1)). Low levels of emission and/or deposition (<1.6% for each, 5.8% in total flux) were observed for the additional reported masses. Overall, our results show that EC flux measurements using PTR-TOFMS is a powerful new tool for characterizing the biosphereatmosphere exchange including both emission and deposition for a large range of BVOC and their oxidation products.
机译:在2010年夏季,质子转移反应-飞行时间-质谱仪(PTR-TOF-MS)和四极质子转移反应质谱仪(PTR-MS)同时部署在位于美国中部山谷的橙色果园中,为期一个月。加州收集适用于涡动协方差(EC)通量计算的连续数据。来自PTR-TOF-MS的高时间分辨率(5 Hz)和高质量分辨率(高达5000 m /Δm)数据为计算各种挥发性有机化合物(VOC)的浓度和通量提供了基础。在整个运动中,检测到664个质量峰,质荷比在10和1278之间。在这里,我们介绍了27种离子物种的PTR-TOF-MS EC通量,同时通过PTR-MS测量了垂直梯度。这些EC通量数据已通过频谱分析(即共谱,归一化共谱和ogive)进行了验证。根据两种PTR仪器的相互比较,在混合比或通量中均未发现明显的仪器偏差,数据显示甲醇和丙酮的平均一致性在5%以内。对于所测量的生物挥发性有机化合物(BVOC),来自PTR-TOF-MS的EC通量与通过PTR-MS从垂直梯度测量得到的定性推断通量方向一致。对于此处报告的27种选定的离子种类,PTR-TOF-MS测量的总(24小时)平均净通量为299μgC m-2 h-1。该站点的主要BVOC排放是单萜(m / z 81.070 + m / z 137.131 + m / z 95.086,34%,102μgCm-2 h -1)和甲醇(m / z 33.032,18%,72μgCm -2 h -1)。在以下质量处(括号中的归因)检测到了第二大通量:m / z 59.048(主要是丙酮,12.2%,36.5μgCm〜(-2)h〜(-1)),m / z 61.027(主要是乙酸,11.9%,35.7μgCm〜(-2)h〜(-1)),m / z 93.069(对伞花精+甲苯,4.1%,12.2μgCm〜(-2)h〜(-1)),m / z 45.033(乙醛,3.8%,11.5μgCm〜(-2)h〜(-1)),m / z 71.048(甲基乙烯基酮+甲基丙烯醛,2.4%,7.1μgCm〜(-2)h〜(-1)) ,和m / z 69.071(异戊二烯+ 2-甲基-3-丁烯-2-醇,1.8%,5.3μgCm〜(-2)h〜(-1))。对于其他报告的质量,观察到低水平的发射和/或沉积(每个<1.6%,总通量的5.8%)。总体而言,我们的结果表明,使用PTR-TOFMS进行EC通量测量是一种强大的新工具,可表征生物大气交换,包括各种BVOC及其氧化产物的发射和沉积。

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