Carbon Sequestration in Arable Soils is Likely to Increase Nitrous Oxide Emissions, Offsetting Reductions in Climate Radiative Forcing

被引:1
|
作者
Changsheng Li
Steve Frolking
Klaus Butterbach-Bahl
机构
[1] University of New Hampshire,Institute for the Study of Earth, Oceans, and Space
[2] Atmospheric Environmental Research,Institute for Meteorology and Climate Research
来源
Climatic Change | 2005年 / 72卷
关键词
Nitrous Oxide; Radiative Force; Nitrous Oxide Emission; Biogeochemical Model; Trading Mechanism;
D O I
暂无
中图分类号
学科分类号
摘要
Strategies for mitigating the increasing concentration of carbon dioxide (CO2) in the atmosphere include sequestering carbon (C) in soils and vegetation of terrestrial ecosystems. Carbon and nitrogen (N) move through terrestrial ecosystems in coupled biogeochemical cycles, and increasing C stocks in soils and vegetation will have an impact on the N cycle. We conducted simulations with a biogeochemical model to evaluate the impact of different cropland management strategies on the coupled cycles of C and N, with special emphasis on C-sequestration and emission of the greenhouse gases methane (CH4) and nitrous oxide (N2O). Reduced tillage, enhanced crop residue incorporation, and farmyard manure application each increased soil C-sequestration, increased N2O emissions, and had little effect on CH4 uptake. Over 20 years, increases in N2O emissions, which were converted into CO2-equivalent emissions with 100-year global warming potential multipliers, offset 75–310% of the carbon sequestered, depending on the scenario. Quantification of these types of biogeochemical interactions must be incorporated into assessment frameworks and trading mechanisms to accurately evaluate the value of agricultural systems in strategies for climate protection.
引用
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页码:321 / 338
页数:17
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