...
首页> 外文期刊>Eurasian Soil Science >Evaluation of organic carbon stocks and DD-2 fluxes in grasslands of Western Transbaikalia
【24h】

Evaluation of organic carbon stocks and DD-2 fluxes in grasslands of Western Transbaikalia

机译:西跨界地区草原中有机碳股和D <倒置感应的评价> D-2势态

获取原文
获取原文并翻译 | 示例
           

摘要

The stocks of organic carbon and mean rates of the CO2 emission during the growing season (May-September) and the entire year were estimated in a sequence of grass ecosystems along the transect encompassing chestnut and meadow-chestnut steppe soils, marsh and meadow alluvial soils, and a haloxerophytic community on a typical solonchak. The total stocks of organic carbon comprised 6.17-9.70 kg/m(2) in steppe, 7.41-10.04 kg/m(2) in floodplain, and 4.74 kg/m(2) in haloxerophytic ecosystems. The portion of humus carbon in the upper 50-cm-thick soil layer comprised 79-92% of the total carbon stock. The mean daily CO2 emission (D-CO2/(m(2) day)) from alluvial soils was moderate (3.3-4.9) or low (1.5-2.5). The dependence of the CO2 emission on the moistening of steppe soils, temperature of alluvial soils, and temperature and moistening of solonchak was revealed. In comparison with the CO2 emission from the zonal chestnut soil, its mean values during the growing season and the entire year were 1.2 times higher for the meadowchestnut soil, 3.3 times higher for the marsh alluvial soil, 2.3 times higher for the meadow alluvial soil, and 1.7 times higher for the solonchak. The portion of the CO2 emission beyond the growing season in the mean annual emission averaged 19.8-24.2% and depended on the type of grass ecosystem and on weather conditions of particular years. The sink of carbon in the grass ecosystems exceeded carbon emission, especially in the steppe ecosystems.
机译:在生长季节(5月至9月)和全年的CO2发射的有机碳和平均股票的股票在一系列草生态系统中估计,横断面包括栗子和草甸 - 栗子草原土壤,沼泽和草甸冲积土壤和典型的Solonchak上的嗜氧源性群落。有机碳总碳储存在普通杉杉,7.41-10.04 kg / m(2)中含有6.17-9.70 kg / m(2),在卤代生态系统中4.74kg / m(2)。上50厘米厚的土壤层中的腐殖质碳部分占总碳储备的79-92%。来自冲积土壤的平均每日CO2发射(D <倒置感叹号> -CO2 /(M(2)日)中等(3.3-4.9)或低(1.5-2.5)。揭示了二氧化碳排放对草原土壤,温度的温度和索尔科克温度和湿化的依赖性。与栗子土壤中的二氧化碳排放相比,其在生长季节的平均值和整年为Meadowchestnut土壤的1.2倍,沼泽肉体土壤较高3.3倍,较高的草地冲积土壤较高2.3倍, Solonchak的1.7倍。在平均年度发射的平均年增长季节的二氧化碳排放部分平均为19.8-24.2%,并取决于草生态系统的类型和特定年份的天气条件。草生态系统中的碳的水槽超过了碳排放,特别是在草原生态系统中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号