FAGE measurements of OH, HO2 and IO during COBRA
FAGE measurements of OH, HO2 and IO during COBRA
批准号:
NE/E007880/1
负责人:
Dwayne Heard
金额:
$3.45万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2007
资助国家:
英国
项目状态:
已结题
起止时间:
2007 至 --
中文摘要
COBRA(碘和溴的共同释放对北极大气的影响)联合项目已经通过国际极地年赠款获得资助,其主要目标是通过减少气相和雪和海冰表面重要化学物质以及化学和物理机制的不确定性,提高对北极臭氧和汞消耗事件的认识。臭氧是一种重要的温室气体,而汞是一种有毒、持久和生物累积的污染物。因此,重要的是要了解消耗事件,这可能是持续的,并发生在春季(极地日出),因为它们对大气氧化能力,气候和健康的影响。COBRA的主要活动之一是2008年春季在哈德逊湾东南海岸的Kuujjuarapik开展的实地活动,该地点有臭氧和汞消耗事件的既定记录(溴“热点”)。现有联合体成员将对BrO、Br 2、BrCl、IO、I2、卤烃、其他挥发性有机化合物、CO、O3、气溶胶碘进行测量,并对各种冰冻表面的卤素、颗粒和臭氧进行通量测量。该项目涉及6个英国机构和3个海外合作伙伴,在卤素和极性化学和物理学方面有着良好的记录,将以1D和3D化学建模为基础,后者使用遥感海冰形成。在这个小补助金,我们建议参加Kuujjuarapik现场活动,并在现场测量的浓度的OH,HO 2和IO自由基的激光诱导荧光光谱使用小型,紧凑的飞机FAGE仪器在利兹开发。这些测量将显著提高COBRA的能力,因为OH提供了氧化能力的测量,而HO 2和OH密切参与了涉及溴和碘的臭氧消耗循环。关于碘在极地边界层化学中的作用和来源知之甚少,但在最近南极洲哈雷的CHABLIS活动期间,观察到IO自由基浓度升高,表明极地大气中碘的广泛和可能的非生物/光化学来源。在CHABLIS期间,我们还对OH和HO 2自由基进行了测量,得出的惊人结论是,这两种物质的预算都是由与卤素物质的耦合决定的。COBRA代表了一个理想的机会来检验这些耦合在北极发挥重要作用的假设。OH,HO 2和IO的测量将提供理想的目标进行比较,详细的模型计算的基础上,我们目前的理解的异构和气相化学机制的HOx和卤素,以及相关的海洋-雪-冰-大气相互作用。一个重要目标是改进北极化学和排放模型及其对区域/全球大气化学和气候的影响和反馈。在这种极地环境中进行测量提出了重大挑战,我们将利用COBRA联盟的现有框架,该联盟将组织所有活动后勤。我们的低成本参与代表了NERC在COBRA IPY项目中已经进行的投资的重要杠杆作用。
英文摘要
The COBRA (Impact of combined iodine and bromine release on the Arctic atmosphere) consortium project is already funded via an International Polar Year (IPY) grant, with the main objectives of improving the understanding of Arctic ozone and mercury depletion events through reducing the uncertainties in important chemical species and chemical and physical mechanisms, both in the gas phase and on surfaces of snow and sea-ice. Ozone is a significant greenhouse gas whilst mercury is a toxic, persistent and bioaccumulative pollutant. Hence it is important to understand the depletion events, which can be sustained and occur in spring (polar sunrise), as they have implications for the atmospheric oxidising capacity, climate and health. One of the major activities within COBRA is a field campaign at Kuujjuarapik on the south-eastern shore of Hudson Bay in spring 2008, a site with an established record of ozone and mercury depletion episodes (a bromine 'hotspot'). Measurements by existing consortium members will be made of BrO, Br2, BrCl, IO, I2, halocarbons, other VOCs, CO, O3, aerosol iodine, as well as flux measurements of halogens, particles and ozone from a variety of frozen surfaces. The project, which involves 6 UK institutions and 3 overseas partners with strong track records in halogen and polar chemistry and physics, will be underpinned by 1D and 3D chemical modelling, the latter using remotely-sensed sea-ice formation. In this small grant we propose to participate in the Kuujjuarapik field campaign and make in situ measurements of the concentrations of OH, HO2 and IO radicals by laser-induced fluorescence spectroscopy using the small, compact aircraft FAGE instrument developed at Leeds. These measurements will enhance significantly the capability of COBRA, as OH provides a measure of the oxidising capacity and HO2 and OH are intimately involved in ozone depleting cycles involving bromine and iodine. Little is known about the role and sources of iodine in polar boundary layer chemistry but during the recent CHABLIS campaign at Halley, Antarctica, elevated concentrations of IO radicals were observed suggesting a widespread and likely abiotic/photochemical source of iodine to the polar atmosphere. During CHABLIS we also made measurements of OH and HO2 radicals, and the striking conclusion was that the budgets of both species were dominated by coupling with halogen species. COBRA represents an ideal opportunity to test the hypothesis that these couplings play a major role in the Arctic. Measurements of OH, HO2 and IO would provide ideal targets for comparison with detailed model calculations based on our current understanding of heterogeneous and gas-phase chemical mechanisms of HOx and halogens, and relevant ocean-snow-ice-atmosphere interactions. An important goal is to improve models of Arctic chemistry and emissions and their effect and feedbacks on regional/global atmospheric chemistry and climate. Making measurements in this polar environment presents significant challenges and we will take advantage of the existing framework of the COBRA consortium, which will organise all campaign logistics. Our involvement at low-cost represents significant gearing of the investment already made by NERC in the COBRA IPY project.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1029/2009jd013665
发表时间:
2010
期刊:
Journal of Geophysical Research
影响因子:
--
作者:
[Mahajan, M. Shaw, H. Oetjen, K. E. Hornsby, L. J. Carpenter, L. Kaleschke, X. Tian-Kunze, J. D. Lee, S. J. Moller, P. Edwards, R. Commane, T. Ingham, D. E. Heard, J. M. C. Plane]
通讯作者:
J. M. C. Plane
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