GSTDTAP  > 地球科学
DOI10.5194/acp-17-11209-2017
Sulfate geoengineering impact on methane transport and lifetime: results from the Geoengineering Model Intercomparison Project (GeoMIP)
Visioni, Daniele1,2; Pitari, Giovanni1; Aquila, Valentina3; Tilmes, Simone4; Cionni, Irene5; Di Genova, Glauco2; Mancini, Eva1,2
2017-09-21
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2017
卷号17期号:18
文章类型Article
语种英语
国家Italy; USA
英文摘要

Sulfate geoengineering (SG), made by sustained injection of SO2 in the tropical lower stratosphere, may impact the CH4 abundance through several photochemical mechanisms affecting tropospheric OH and hence the methane lifetime. (a) The reflection of incoming solar radiation increases the planetary albedo and cools the surface, with a tropospheric H2O decrease. (b) The tropospheric UV budget is upset by the additional aerosol scattering and stratospheric ozone changes: the net effect is meridionally not uniform, with a net decrease in the tropics, thus producing less tropospheric O(D-1). (c) The extratropical downwelling motion from the lower stratosphere tends to increase the sulfate aerosol surface area density available for heterogeneous chemical reactions in the mid-to-upper troposphere, thus reducing the amount of NOx and O-3 production. (d) The tropical lower stratosphere is warmed by solar and planetary radiation absorption by the aerosols. The heating rate perturbation is highly latitude dependent, producing a stronger meridional component of the Brewer-Dobson circulation. The net effect on tropospheric OH due to the enhanced stratosphere-troposphere exchange may be positive or negative depending on the net result of different superimposed species perturbations (CH4, NOy, O-3, SO4) in the extratropical upper troposphere and lower stratosphere (UTLS). In addition, the atmospheric stabilization resulting from the tropospheric cooling and lower stratospheric warming favors an additional decrease of the UTLS extratropical CH4 by lowering the horizontal eddy mixing. Two climate-chemistry coupled models are used to explore the above radiative, chemical and dynamical mechanisms affecting CH4 transport and lifetime (ULAQ-CCM and GEOSCCM). The CH4 lifetime may become significantly longer (by approximately 16 %) with a sustained injection of 8 Tg-SO2 yr(-1) starting in the year 2020, which implies an increase of tropospheric CH4 (200 ppbv) and a positive indirect radiative forcing of sulfate geoengineering due to CH4 changes (+ 0.10Wm(-2) in the 2040-2049 decade and + 0.15Wm(-2) in the 2060-2069 decade).


领域地球科学
收录类别SCI-E
WOS记录号WOS:000411363100003
WOS关键词MOUNT-PINATUBO ; STRATOSPHERIC SULFUR ; UV-RADIATION ; OZONE ; CLIMATE ; EMISSIONS ; RESOLUTION ; ERUPTION ; CLOUD ; H2O
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/30859
专题地球科学
作者单位1.Univ Aquila, Dept Phys & Chem Sci, I-67100 Laquila, Italy;
2.Univ Aquila, CETEMPS, I-67100 Laquila, Italy;
3.Johns Hopkins Univ, Dept Earth & Planetary Sci, GESTAR, 3400 N Charles St, Baltimore, MD 21218 USA;
4.Natl Ctr Atmospher Res, Boulder, CO 80305 USA;
5.ENEA, Ente Nuove Tecnol Energia & Ambiente, I-00123 Rome, Italy
推荐引用方式
GB/T 7714
Visioni, Daniele,Pitari, Giovanni,Aquila, Valentina,et al. Sulfate geoengineering impact on methane transport and lifetime: results from the Geoengineering Model Intercomparison Project (GeoMIP)[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2017,17(18).
APA Visioni, Daniele.,Pitari, Giovanni.,Aquila, Valentina.,Tilmes, Simone.,Cionni, Irene.,...&Mancini, Eva.(2017).Sulfate geoengineering impact on methane transport and lifetime: results from the Geoengineering Model Intercomparison Project (GeoMIP).ATMOSPHERIC CHEMISTRY AND PHYSICS,17(18).
MLA Visioni, Daniele,et al."Sulfate geoengineering impact on methane transport and lifetime: results from the Geoengineering Model Intercomparison Project (GeoMIP)".ATMOSPHERIC CHEMISTRY AND PHYSICS 17.18(2017).
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