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有关硫酸盐气溶胶氧同位素异常与火山和厄尔尼诺南方涛动的传说。

Tales of volcanoes and El-Nino southern oscillations with the oxygen isotope anomaly of sulfate aerosol.

机构信息

Department of Chemistry and Biochemistry, University of California San Diego, La Jolla, CA 92093.

出版信息

Proc Natl Acad Sci U S A. 2013 Oct 29;110(44):17662-7. doi: 10.1073/pnas.1213149110. Epub 2013 Feb 27.

Abstract

The ability of sulfate aerosols to reflect solar radiation and simultaneously act as cloud condensation nuclei renders them central players in the global climate system. The oxidation of S(IV) compounds and their transport as stable S(VI) in the Earth's system are intricately linked to planetary scale processes, and precise characterization of the overall process requires a detailed understanding of the linkage between climate dynamics and the chemistry leading to the product sulfate. This paper reports a high-resolution, 22-y (1980-2002) record of the oxygen-triple isotopic composition of sulfate (SO4) aerosols retrieved from a snow pit at the South Pole. Observed variation in the O-isotopic anomaly of SO4 aerosol is linked to the ozone variation in the tropical upper troposphere/lower stratosphere via the Ozone El-Niño Southern Oscillations (ENSO) Index (OEI). Higher (17)O values (3.3‰, 4.5‰, and 4.2‰) were observed during the three largest ENSO events of the past 2 decades. Volcanic events inject significant quantities of SO4 aerosol into the stratosphere, which are known to affect ENSO strength by modulating stratospheric ozone levels (OEI = 6 and (17)O = 3.3‰, OEI = 11 and (17)O = 4.5‰) and normal oxidative pathways. Our high-resolution data indicated that (17)O of sulfate aerosols can record extreme phases of naturally occurring climate cycles, such as ENSOs, which couple variations in the ozone levels in the atmosphere and the hydrosphere via temperature driven changes in relative humidity levels. A longer term, higher resolution oxygen-triple isotope analysis of sulfate aerosols from ice cores, encompassing more ENSO periods, is required to reconstruct paleo-ENSO events and paleotropical ozone variations.

摘要

硫酸盐气溶胶能够反射太阳辐射,同时充当云凝结核,因此它们是全球气候系统中的核心角色。S(IV)化合物的氧化及其在地球系统中以稳定的 S(VI)形式的运输与行星尺度过程密切相关,要精确描述整个过程,就需要详细了解导致硫酸盐产物的气候动态和化学之间的联系。本文报道了一项为期 22 年(1980-2002 年)的南极雪坑硫酸盐气溶胶氧三同位素组成的高分辨率记录。SO4 气溶胶氧同位素异常的观测变化与热带对流层顶/平流层下部的臭氧变化通过臭氧厄尔尼诺南方涛动指数(OEI)相关联。在过去 20 年中发生的三次最大的厄尔尼诺事件中,观察到了更高的(17)O 值(3.3‰、4.5‰和 4.2‰)。火山事件将大量的 SO4 气溶胶注入平流层,这已知会通过调节平流层臭氧水平(OEI = 6 和(17)O = 3.3‰,OEI = 11 和(17)O = 4.5‰)和正常氧化途径来影响厄尔尼诺事件的强度。我们的高分辨率数据表明,硫酸盐气溶胶的(17)O 可以记录自然发生的气候循环的极端阶段,例如厄尔尼诺事件,这些事件通过相对湿度水平的温度驱动变化将大气和水圈中的臭氧水平变化联系起来。需要对冰芯中的硫酸盐气溶胶进行更长时间、更高分辨率的氧三同位素分析,以重建古厄尔尼诺事件和古热带臭氧变化。

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Atmospheric science. Water vapor in the lower stratosphere.大气科学。平流层下部的水汽。
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