Greenhouse gas emissions from soils—A review
Выбросы парниковых газов из почв — обзор
2016-04-29
SCID: 54.1/wge4cjzk
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carbon dioxideglobal soil emissionsmethanenitrous oxidesoil greenhouse gas emissions
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Abstract (AI)
Soils act as sources and sinks for greenhouse gases (GHG) such as carbon dioxide (CO 2 ), methane (CH 4 ), and nitrous oxide (N 2 O). Since both storage and emission capacities may be large, precise quantifications are needed to obtain reliable global budgets that are necessary for land-use management (agriculture, forestry), global change and for climate research. This paper discusses exclusively the soil emission-related processes and their influencing parameters. It reviews soil emission studies involving the most important land-cover types and climate zones and introduces important measuring systems for soil emissions. It addresses current shortcomings and the obvious bias towards northern hemispheric data. When using a conservative average of 300 mg CO 2 e m −2 h −1 (based on our literature review), this leads to global annual net soil emissions of ≥350 Pg CO 2 e (CO 2 e = CO 2 equivalents = total effect of all GHG normalized to CO 2 ). This corresponds to roughly 21% of the global soil C and N pools. For comparison, 33.4 Pg CO 2 are being emitted annually by fossil fuel combustion and the cement industry.
Key Findings
1
Estimated soil emissions correspond to roughly 21% of global soil carbon and nitrogen pools and greatly exceed annual fossil-fuel and cement emissions of 33.4 Pg CO₂.
2
Existing soil-emission research has important shortcomings, including a pronounced bias toward data from the Northern Hemisphere.
3
Soils function as both sources and sinks for CO₂, CH₄, and N₂O, requiring precise quantification for reliable global greenhouse-gas budgets.
4
The review synthesizes soil-emission processes, influencing parameters, measurement systems, land-cover types, and climate-zone studies.
5
Using a conservative average emission rate of 300 mg CO₂-equivalent m⁻² h⁻¹, global annual net soil emissions are estimated at ≥350 Pg CO₂-equivalent.
Research Object
Soil greenhouse-gas emissions across major land-cover types and climate zones
Research Subject
Soil emission-related processes, their influencing parameters, measurement, and global emission quantification
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2016-04-29
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