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Collaborative Research: Halogen Activation and Multiphase Chemical Processing in the Continental Boundary Layer

Collaborative Research: Halogen Activation and Multiphase Chemical Processing in the Continental Boundary Layer
合作研究:大陆边界层中的卤素活化和多相化学处理
批准号:
1041187
负责人:
William Keene
金额:
$31.69万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-02-01 至 2014-01-31

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中文摘要
翻译
众所周知,卤素的多相化学涉及大气中的一系列化学相互作用,从臭氧循环、碳氢化合物和还原硫化合物的氧化、奇数氮和氧(HOx和NOx)循环,以及参与气溶胶成核、生长和非均相化学路径。活跃的卤素反应性经常与沿海或海洋区域有关,反映了那里发现的丰富的海洋卤化物来源。最近对氯原子前体硝基氯(ClNO2)反应活性的夜间观察似乎预测了这一途径在大陆上令人惊讶的存在,这可能有助于我们理解卤素对非海洋环境中上述几个物种的全球影响。夜间ClNO2的产生源于N2O5与颗粒氯的反应,这使得人们对包括工业活动、生物质燃烧和风吹矿物粉尘运输在内的大陆氯的来源有多了解产生了疑问。上述疑似氯活化途径的几个方面仍有待调查。这项研究涉及一些大学研究人员与美国国家海洋和大气局(ESRL)的同事一起对大陆气团中的卤素反应途径进行额外的表征。将要研究的主要问题包括:i)大陆空气中卤素光化学过程的定量评估,ii)夜间大陆空气中活性卤素化学的产生和循环的机理研究。这项研究对空气质量、大气中卤素的自然循环和我们呼吸的空气的氧化能力有影响。
英文摘要
The multiphasic chemistry of halogens is known to be involved in a range of chemical interactions in the atmosphere ranging from the O3 cycle, oxidation of hydrocarbons and reduced sulphur compounds, the odd nitrogen and oxygen (HOx and NOx) cycles, as well as involvement in aerosol nucleation, growth and heterogeneous chemical paths. Active halogen reactivity is frequently associated with coastal or marine zones, reflecting the abundance of oceanic halide sources found there. Recent nocturnal observations of the reactivity of a chlorine atom precursor, nitryl chloride (ClNO2) has seemed to predict a surprising continental presence of this pathway, which potentially has implications to our understanding of the global impact of halogens on several of the above species in non-marine settings. Nocturnal ClNO2 arises from the reactivity of N2O5 on particulate chloride, which brings into question how well continental chloride sources including industrial activity, biomass burning, and the transport of wind blown mineral dust are really known.Several aspects of the above suspected chlorine activation pathways remain to be investigated. This investigation involves a number of university researchers joining with NOAA (ESRL) colleagues on additional characterization of halogen reactivity pathways in continental air masses. Overarching issues to be investigated include: i) quantitative evaluation of halogen photochemical processes in continental air, ii) mechanistic study of the generation and recycling of active halogen chemistry in nocturnal continental air.This research has implications for air quality, the natural cycle of halogens in the atmsphere and the oxidative capacity of the air we breathe.
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Collaborative Research: Emergency Funding for Repair of the Bermuda Institute of Ocean Sciences Tudor Hill Marine Atmospheric Observatory
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海外基金
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