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DOI10.1038/s41561-022-00942-1
Global cycling and climate effects of aeolian dust controlled by biological soil crusts
Rodriguez-Caballero E.;   Stanelle T.;   Egerer S.;   Cheng Y.;   Su H.;   Canton Y.;   Belnap J.;   Andreae M.O.;   Tegen I.;   Reick C.H.;   Pöschl U.;   Weber B.
发表日期2022
ISSN1752-0894
起始页码458
结束页码463
卷号15期号:6
英文摘要Biological soil crusts (biocrusts) cover ~12% of the global land surface. They are formed by an intimate association between soil particles, photoautotrophic and heterotrophic organisms, and they effectively stabilize the soil surface of drylands. Quantitative information on the impact of biocrusts on the global cycling and climate effects of aeolian dust, however, is not available. Here, we combine the currently limited experimental data with a global climate model to investigate the effects of biocrusts on regional and global dust cycling under current and future conditions. We estimate that biocrusts reduce the global atmospheric dust emissions by ~60%, preventing the release of ~0.7 Pg dust per year. Until 2070, biocrust coverage is expected to be severely reduced by climate change and land-use intensification. The biocrust loss will cause an increased dust burden, leading to a reduction of the global radiation budget of around 0.12 to 0.22 W m−2, corresponding to about 50% of the total direct forcing of anthropogenic aerosols. This biocrust control on dust cycling and its climate impacts have important implications for human health, biogeochemical cycling and the functioning of the ecosystems, and thus should be considered in the modelling, mitigation and management of global change. © 2022, The Author(s).
语种英语
scopus关键词climate change; climate modeling; eolian deposit; global climate; radiation budget; soil surface
来源期刊Nature Geoscience
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/262192
作者单位Agronomy Department, University of Almeria, Almería, Spain
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GB/T 7714
Rodriguez-Caballero E.; Stanelle T.; Egerer S.; Cheng Y.; Su H.; Canton Y.; Belnap J.; Andreae M.O.; Tegen I.; Reick C.H.; Pöschl U.; Weber B.. Global cycling and climate effects of aeolian dust controlled by biological soil crusts[J],2022,15(6).
APA Rodriguez-Caballero E.; Stanelle T.; Egerer S.; Cheng Y.; Su H.; Canton Y.; Belnap J.; Andreae M.O.; Tegen I.; Reick C.H.; Pöschl U.; Weber B..(2022).Global cycling and climate effects of aeolian dust controlled by biological soil crusts.Nature Geoscience,15(6).
MLA Rodriguez-Caballero E.; Stanelle T.; Egerer S.; Cheng Y.; Su H.; Canton Y.; Belnap J.; Andreae M.O.; Tegen I.; Reick C.H.; Pöschl U.; Weber B.."Global cycling and climate effects of aeolian dust controlled by biological soil crusts".Nature Geoscience 15.6(2022).
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