环境科学
土壤水分
土壤呼吸
二氧化碳
碳循环
陆地生态系统
土壤碳
大气科学
生物圈
大气(单位)
初级生产
植被(病理学)
生态系统
纬度
温室气体
水文学(农业)
土壤科学
生态学
地质学
岩土工程
热力学
病理
物理
生物
医学
大地测量学
作者
James W. Raich,Christopher Potter
摘要
We use semi‐mechanistic, empirically based statistical models to predict the spatial and temporal patterns of global carbon dioxide emissions from terrestrial soils. Emissions include the respiration of both soil organisms and plant roots. At the global scale, rates of soil CO 2 efflux correlate significantly with temperature and precipitation; they do not correlate well with soil carbon pools, soil nitrogen pools, or soil C:N. Wetlands cover about 3% of the land area but diminish predicted CO 2 emissions by only about 1%. The estimated annual flux of CO 2 from soils to the atmosphere is estimated to be 76.5 Pg C yr −1 , 1–9 Pg greater than previous global estimates, and 30–60% greater than terrestrial net primary productivity. Historic land cover changes are estimated to have reduced current annual soil CO 2 emissions by 0.2–2.0 Pg C yr −1 in comparison with an undisturbed vegetation cover. Soil CO 2 fluxes have a pronounced seasonal pattern in most locations, with maximum emissions coinciding with periods of active plant growth. Our models suggest that soils produce CO 2 throughout the year and thereby contribute to the observed wintertime increases in atmospheric CO 2 concentrations. Our derivation of statistically based estimates of soil CO 2 emissions at a 0.5° latitude by longitude spatial and monthly temporal resolution represents the best‐resolved estimate to date of global CO 2 fluxes from soils and should facilitate investigations of net carbon exchanges between the atmosphere and terrestrial biosphere.
科研通智能强力驱动
Strongly Powered by AbleSci AI