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在美韩空气质量联合研究(KORUS-AQ)实地考察期间,利用改进后的潘多拉光谱仪对甲醛柱观测值进行的首次评估。

The first evaluation of formaldehyde column observations by improved Pandora spectrometers during the KORUS-AQ field study.

作者信息

Spinei Elena, Whitehill Andrew, Fried Alan, Tiefengraber Martin, Knepp Travis N, Herndon Scott, Herman Jay R, Müller Moritz, Abuhassan Nader, Cede Alexander, Richter Dirk, Walega James, Crawford James, Szykman James, Valin Lukas, Williams David J, Long Russell, Swap Robert J, Lee Youngjae, Nowak Nabil, Poche Brett

机构信息

NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA.

Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

出版信息

Atmos Chem Phys. 2018;11:4943-4961. doi: 10.5194/amt-11-4943-2018.

Abstract

The Korea-United States Air Quality Study (KORUS-AQ) conducted during May-June 2016 offered the first opportunity to evaluate direct-sun observations of formaldehyde (HCHO) total column densities with improved Pandora spectrometer instruments. The measurements highlighted in this work were conducted both in the Seoul megacity area at the Olympic Park site (37.5232° N, 27.1260° E; 26 ma.s.l.) and at a nearby rural site downwind of the city at the Mount Taehwa research forest site (37.3123° N, 127.3106° E; 160ma.s.l.). Evaluation of these measurements was made possible by concurrent ground-based in situ observations of HCHO at both sites as well as overflight by the NASA DC-8 research aircraft. The flights provided in situ measurements of HCHO to characterize its vertical distribution in the lower troposphere (0-5km). Diurnal variation in HCHO total column densities followed the same pattern at both sites, with the minimum daily values typically observed between 6:00 and 7:00 local time, gradually increasing to a maximum between 13:00 and 17:00 before decreasing into the evening. Pandora vertical column densities were compared with those derived from the DC-8 HCHO in situ measured profiles augmented with in situ surface concentrations below the lowest altitude of the DC-8 in proximity to the ground sites. A comparison between 49 column densities measured by Pandora vs. aircraft-integrated in situ data showed that Pandora values were larger by 16% with a constant offset of 0.22DU (Dobson units; = 0.68). Pandora HCHO columns were also compared with columns calculated from the surface in situ measurements over Olympic Park by assuming a well-mixed lower atmosphere up to a ceilometer-measured mixed-layer height (MLH) and various assumptions about the small residual HCHO amounts in the free troposphere up to the tropopause. The best comparison (slope = 1.03±0.03; intercept = 0.29±0.02DU; and = 0.78±0.02) was achieved assuming equal mixing within ceilometer-measured MLH combined with an exponential profile shape. These results suggest that diurnal changes in HCHO surface concentrations can be reasonably estimated from the Pandora total column and information on the mixed-layer height. More work is needed to understand the bias in the intercept and the slope relative to columns derived from the in situ aircraft and surface measurements.

摘要

2016年5月至6月进行的美韩空气质量研究(KORUS - AQ)首次提供了机会,利用改进后的潘多拉光谱仪仪器评估甲醛(HCHO)总柱密度的直射观测结果。本研究重点突出的测量工作在首尔大城市地区的奥林匹克公园站点(北纬37.5232°,东经127.1260°;海拔26米)以及城市下风方向附近的太白山研究森林站点(北纬37.3123°,东经127.3106°;海拔160米)进行。通过在两个站点同时进行的地面原位HCHO观测以及美国国家航空航天局(NASA)DC - 8研究飞机的飞越,得以对这些测量结果进行评估。这些飞行提供了HCHO的原位测量数据,以表征其在对流层下部(0 - 5千米)的垂直分布。两个站点的HCHO总柱密度的日变化遵循相同模式,当地时间6:00至7:00之间通常观测到每日最小值,随后逐渐增加,在13:00至17:00之间达到最大值,然后在傍晚下降。将潘多拉垂直柱密度与通过DC - 8 HCHO原位测量剖面并结合地面站点附近低于DC - 8最低高度的原位地表浓度得出的垂直柱密度进行了比较。对潘多拉测量的49个柱密度与飞机综合原位数据之间的比较表明,潘多拉值大16% ,恒定偏移为0.22DU(多布森单位;相关系数 = 0.68)。还将潘多拉HCHO柱与通过假设直至激光雷达测量混合层高度(MLH)以下低层大气充分混合以及对流层直至对流层顶自由对流层中小量残余HCHO的各种假设,根据奥林匹克公园地面原位测量计算得出的柱进行了比较。假设在激光雷达测量的MLH内混合均匀并结合指数剖面形状,可实现最佳比较(斜率 = 1.03±0.03;截距 = 0.29±0.02DU;相关系数 = 0.78±0.02)。这些结果表明,可根据潘多拉总柱以及混合层高度信息合理估算HCHO地表浓度的日变化。需要开展更多工作来了解相对于原位飞机和地面测量得出之柱而言,截距和斜率中的偏差情况。

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