globalchange  > 气候变化事实与影响
DOI: 10.1039/c8pp90063a
WOS记录号: WOS:000461049300005
论文题名:
Solar UV radiation in a changing world: roles of cryosphere-land-water-atmosphere interfaces in global biogeochemical cycles
作者: Sulzberger, B.1; Austin, A. T.2,3; Cory, R. M.4; Zepp, R. G.5; Paul, N. D.6
通讯作者: Sulzberger, B.
刊名: PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES
ISSN: 1474-905X
EISSN: 1474-9092
出版年: 2019
卷: 18, 期:3, 页码:747-774
语种: 英语
WOS关键词: DISSOLVED ORGANIC-MATTER ; CARBON-MONOXIDE PHOTOPRODUCTION ; PLANT LITTER DECOMPOSITION ; ULTRAVIOLET-B RADIATION ; METHANE EMISSIONS ; PHOTOCHEMICAL PRODUCTION ; SUNLIGHT INACTIVATION ; CLIMATE-CHANGE ; PERMAFROST DEGRADATION ; TROPICAL WETLANDS
WOS学科分类: Biochemistry & Molecular Biology ; Biophysics ; Chemistry, Physical
WOS研究方向: Biochemistry & Molecular Biology ; Biophysics ; Chemistry
英文摘要:

Global change influences biogeochemical cycles within and between environmental compartments (i.e., the cryosphere, terrestrial and aquatic ecosystems, and the atmosphere). A major effect of global change on carbon cycling is altered exposure of natural organic matter (NOM) to solar radiation, particularly solar UV radiation. In terrestrial and aquatic ecosystems, NOM is degraded by UV and visible radiation, resulting in the emission of carbon dioxide (CO2) and carbon monoxide, as well as a range of products that can be more easily degraded by microbes (photofacilitation). On land, droughts and land-use change can reduce plant cover causing an increase in exposure of plant litter to solar radiation. The altered transport of soil organic matter from terrestrial to aquatic ecosystems also can enhance exposure of NOM to solar radiation. An increase in emission of CO2 from terrestrial and aquatic ecosystems due to the effects of global warming, such as droughts and thawing of permafrost soils, fuels a positive feedback on global warming. This is also the case for greenhouse gases other than CO2, including methane and nitrous oxide, that are emitted from terrestrial and aquatic ecosystems. These trace gases also have indirect or direct impacts on stratospheric ozone concentrations. The interactive effects of UV radiation and climate change greatly alter the fate of synthetic and biological contaminants. Contaminants are degraded or inactivated by direct and indirect photochemical reactions. The balance between direct and indirect photodegradation or photoinactivation of contaminants is likely to change with future changes in stratospheric ozone, and with changes in runoff of coloured dissolved organic matter due to climate and land-use changes.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/131677
Appears in Collections:气候变化事实与影响

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作者单位: 1.Eawag Swiss Fed Inst Aquat Sci & Technol, Dubendorf, Switzerland
2.Univ Buenos Aires, Fac Agron, Inst Invest Fisiol & Ecol Vinculadas Agr IFEVA, Buenos Aires, DF, Argentina
3.Univ Buenos Aires, Fac Agron, Consejo Nacl Invest Cient & Tecn CONICET, Buenos Aires, DF, Argentina
4.Univ Michigan, Earth & Environm Sci, Ann Arbor, MI 48109 USA
5.US EPA, Athens, GA USA
6.Univ Lancaster, Lancaster Environm Ctr, Lancaster LA1 4YQ, England

Recommended Citation:
Sulzberger, B.,Austin, A. T.,Cory, R. M.,et al. Solar UV radiation in a changing world: roles of cryosphere-land-water-atmosphere interfaces in global biogeochemical cycles[J]. PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES,2019-01-01,18(3):747-774
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