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利用星载测量量化痕量气体的源汇:当前和未来的科学。

Quantifying sources and sinks of trace gases using space-borne measurements: current and future science.

机构信息

School of GeoSciences, University of Edinburgh, Edinburgh EH9 3JW, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2008 Dec 28;366(1885):4509-28. doi: 10.1098/rsta.2008.0176.

Abstract

We have been observing the Earth's upper atmosphere from space for several decades, but only over the past decade has the necessary technology begun to match our desire to observe surface air pollutants and climate-relevant trace gases in the lower troposphere, where we live and breathe. A new generation of Earth-observing satellites, capable of probing the lower troposphere, are already orbiting hundreds of kilometres above the Earth's surface with several more ready for launch or in the planning stages. Consequently, this is one of the most exciting times for the Earth system scientists who study the countless current-day physical, chemical and biological interactions between the Earth's land, ocean and atmosphere. First, I briefly review the theory behind measuring the atmosphere from space, and how these data can be used to infer surface sources and sinks of trace gases. I then present some of the science highlights associated with these data and how they can be used to improve fundamental understanding of the Earth's climate system. I conclude the paper by discussing the future role of satellite measurements of tropospheric trace gases in mitigating surface air pollution and carbon trading.

摘要

我们已经从太空观测地球高层大气几十年了,但直到过去十年,才出现了必要的技术,让我们有能力观测生活和呼吸的低层对流层中的地表空气污染物和与气候相关的痕量气体。新一代能够探测低层大气的地球观测卫星已经在地球表面数百公里的高空轨道上运行,还有几颗已经准备好发射或正在规划阶段。因此,对于研究地球陆地、海洋和大气之间无数当前物理、化学和生物相互作用的地球系统科学家来说,这是最令人兴奋的时期之一。首先,我简要回顾一下从太空测量大气的理论,以及如何利用这些数据推断痕量气体的地表源汇。然后,我介绍了与这些数据相关的一些科学亮点,以及它们如何用于提高对地球气候系统的基本认识。最后,我讨论了卫星测量对流层痕量气体在缓解地表空气污染和碳交易方面的未来作用。

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