期刊文献+

青海南部高原积雪期与生长季高寒草甸土壤CO_2、CH_4和N_2O通量的观测 被引量:6

Soil CO_2,CH_4 and N_2O Fluxes from Alpine Meadows on the Plateau of Southern Qinghai Province During Snow Cover Period and Growing Seasons
原文传递
导出
摘要 以静态箱采集气体和气相色谱分析气体浓度方法,测定分析了青海南部高原积雪期和生长季高寒草甸土壤CO_2、CH_4和N_2O通量.结果表明在积雪集中期的3月3日和4日,积雪深度为9~10 cm时,土壤CO_2通量为1.33 g·(m^2·h)-1、N_2O通量为0.21 mg·(m^2·h)-1、CH_4通量为-0.19 mg·(m^2·h)-1;在积雪末期的4月30日,积雪深度在8~9 cm时,土壤CO_2通量为4.70 g·(m^2·h)^(-1)、N_2O通量为0.24 mg·(m^2·h)-1、CH_4通量为-1.23 mg·(m^2·h)-1;积雪深度小于4 cm时,土壤CO_2和N_2O通量较低或为负值,土壤CH_4通量为负值且绝对值较小.土壤CO_2和N_2O通量与积雪深度呈正相关、土壤CH_4通量与积雪深度呈负相关(P<0.05),土壤CO_2与CH_4通量及CH_4与N_2O通量间呈负相关、土壤CO_2与N_2O通量间呈正相关.土壤CO_2和N_2O通量在生长季较高、在积雪末期其次、在积雪集中期较低;土壤CH_4通量为负值,其绝对值在生长季和积雪末期较大.结果说明积雪改变将影响青藏高原高寒草甸土壤温室气体通量. To understand the fluxes of soil greenhouse gases from Alpine meadows on the Qinghai-Tibet plateau during non-growing season,a static chamber method was used to sample gases of soil CO2,CH4 and N2O from alpine meadow on the plateau of Southern Qinghai province during snow cover period,and gas chromatography was used to analyze concentrations of these gases. The results showed that soil CO2 flux was 1. 33 g·( m2·h)-1,soil CH4 flux was- 0. 19 mg·( m2·h)-1,and soil N2O flux was 0. 21mg· (m2·h)-1when the snow depth was 9-10 cm on March 3 and 4 during the prevalence period of snow cove; soil CO2 flux was 4. 70g· m2·h-1,and soil N2O flux was 0. 24 mg·( m2·h)-1,and soil CH_4 flux was-1. 23 mg·( m2·h-1when the snow depth was 8-9 cm on April 30 during the end period of snow cover. And soil CO2 and N2O fluxes were low or negative,soil CH4 flux was negative and its absolute value was low when the snow depth was less than 4 cm during snow cover period. In addition,soil CO2 or N2O flux was positively correlated with the snow depth,and soil CH4 flux was negatively correlated with the snow depth( P〈 0. 05). Additionally,soil CO2 or N2O flux was negatively correlated with CH4 fluxes,and soil CO2 was positively correlated with soil N2O flux. In addition,soil CO2 flux was the highest during the growing season,followed by the end period of snow cover,and it was the lowest during the prevalence period of snow cover; soil N2O flux was high during the growing season,followed by the end period of snow cover,and it was the lowest during the prevalence period of snow cover; soil CH4 flux was negative,and its absolute value was higher during the growing season than other seasons,and it was the lowest during the prevalence period of snow cover. The results suggested that the change in snow cover would influence the fluxes of soil greenhouse gases from alpine meadow on the Qinghai-Tibet plateau.
出处 《环境科学》 EI CAS CSCD 北大核心 2016年第8期2914-2923,共10页 Environmental Science
基金 国家自然科学基金项目(41173085) 国家科技支撑计划项目(2012BAC19B06)
关键词 积雪 土壤温室气体 通量 气候变化 高寒草甸 青藏高原 snow cover soil greenhouse gases flux climate change alpine meadow Qinghai-Tibet Plateau
  • 相关文献

参考文献55

  • 1Pumpanen J, Ilvesniemi H,Peramaki M, et al. Seasonalpatterns of soil C02 efflux and soil air C02 concentration in ascots pine forest: comparison of two chamber techniques [ J ].Global Change Biology, 2003,9(3) : 371-382.
  • 2Welker J M,Fahnestock J T, Jones M H. Annual C02 flux indry and moist Arctic tundra : field responses to increases insummer temperatures and winter snow depth [ J ]. ClimaticChange, 2000,44(1-2) : 139-150.
  • 3Monson R K, Lipson D L, Bums S P,ef al. Winter forest soilrespiration controlled by climate and microbial communitycomposition!:J]. Nature, 2006,439(7077) : 711-714.
  • 4Oquist M G, Laudon H. Winter soil frost conditions in borealforests control growing season soil C02 concentration and itsatmospheric exchange [ J ]. Global Change Biology, 2008,14(12): 2839-2847.
  • 5Muhr J, Borken W, Matzner E. Effects of soil frost on soil respiration and its radiocarbon signature in a Norway spruce forest soil[J]. Global Change Biology, 2009, 15(4) : 782-793.
  • 6Maljanen M,Kohonen A R, Virkajarvi P, et al. Fluxes andproduction of N20,C02 and CH4 in boreal agricultural soilduring winter as affected by snow cover[ J]. Tellus B, 2007,59(5): 853-859.
  • 7Decker K L M, Wang D,Waitea C, et al. Snow removal andambient air temperature effects on forest soil temperatures innorthern Vermont [ J ] . Soil Science Society of America Journal,2003,67(4) : 1234-1242.
  • 8Jones H G,Pomeroy J W, Walker D A, e; al. Snow ecology, aninterdisciplinary examination of snow-covered ecosystems [ M ].Cambridge, United Kingdom, New York,USA : CambridgeUniversity Press, 2001.
  • 9IPCC. Summary for policymakers[ A]. In: Field C B, Barros VR,Dokken D J, et al ( Eds. ). Climate Change 2014 : Impacts,Adaptation, and Vulnerability. . Contribution of Working GroupII to the Fifth Assessment Report of the Intergovernmental Panelon Climate Change [ M ]. Cambridge. United Kingdom, NewYork , USA ; Cambridge University Press, 2014.
  • 10Brooks P D,Schmidt S K, Williams M W. Winter production ofC02 and N2 0 from alpine tundra : environmental controls andrelationship to inter-system C and N fluxes [ J ]. Oecologia,1997,110(3) : 403-413.

二级参考文献97

共引文献262

同被引文献70

引证文献6

二级引证文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部