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Environmental effects on net ecosystem COd2 exchange at half-hour and month scales over Stipa krylovii steppe in northern China

机译:中国北方针茅草原半小时和一个月尺度上对生态系统净COd2交换的环境影响

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The objectives of this research are to quantify the magnitude of COd2 exchange and to investigate the responses of net ecosystem COd2 exchange (NEE), gross ecosystem production (GEP) and ecosystem respiration (Rde) to environmental factors over a temperate Stipa krylovii steppe by an eddy covariance system in northern China. Differences in annual precipitation, soil water content (SWC), air temperature (Tda) and evapotranspiration (ET) were the most important factors which controlled patterns and variations of COd2 exchange between atmosphere and the steppe. Precipitation received at study site was 297mm in 2004, close to the average value during 1971-2000 (+/-S.D., 290+/-82mm), whereas precipitations in 2005 (174mm) and 2006 (215mm) were significantly below the average. The lowest values of precipitation and SWC in 2005 resulted in much lower carbon exchange rate related to those in 2004 and 2006. In 2005, daytime NEE reached the seasonal peak about -3gammamolCmu-u2su-u1, this was much lower than those in 2004 and 2006 (-7 to -8gammamolCmu-u2su-u1). Seasonal peaks of integrated monthly NEE was the lowest in 2005 (-8.8g Cmu-u2monu-u1) and the highest in 2004 (-34.3gCmu-u2monu-u1). Compared with 2004, the peak values of monthly GEP and Rde in 2005 reduced more than 30% and 20% due to soil water stress. SWC was an important environmental factor regulated the variation of COd2 exchange. At hour time scale, daytime NEE was positive when SWC was less than 0.15mu3mu-u3, Rde tripled when SWC increased from 0.075 to 0.225mu3mu-u3. At month time scale, SWC was the primary factor controlling monthly COd2 fluxes, there was no net carbon uptake until SWC exceeded 18%, in the low (LAI<0.5mu2mu-u2) and the high (LAI>0.5mu2mu-u2) ranges of LAI, SWC explained about 71% and 90% variations in monthly NEE, and about 92% and 82% variations in monthly GEP. Except SWC, NEE-light response curve was also regulated by air temperature because it influenced both plant photosynthetic capacity and the variations of soil and plant respirations. The optimal air temperature for the carbon uptake of S. krylovii steppe was 10-20uoC, carbon uptake decreased in magnitude when air temperature departed from this range. The close relationship between ET and COd2 fluxes was explained that ET was determined by both SWC and Tda. At monthly scale, ET predicted 62% variations of NEE, 78% variations of GEP, 85% variations of Rde. Accumulative ET and accumulative NEE in growing seasons were tightly coupled. The highest ET coincided with carbon sink in the growing season of 2006, and the lowest ET in 2005 resulted in the maximum carbon loss.
机译:这项研究的目的是量化温带针茅草草原上COd2交换量的大小,并研究温带针茅草原上净生态系统COd2交换量(NEE),生态系统总产量(GEP)和生态系统呼吸作用(Rde)对环境因子的响应。中国北方的涡度协方差系统年降水量,土壤含水量(SWC),气温(Tda)和蒸散量(ET)的差异是控制大气与草原之间COd2交换方式和变化的最重要因素。 2004年研究地点的降水量为297mm,接近1971-2000年的平均值(+/- S.D。,290 +/- 82mm),而2005年(174mm)和2006年(215mm)的降水量明显低于平均值。 2005年的最低降水和SWC值导致与2004年和2006年相比的碳交换率要低得多。2005年,白天的NEE达到了约-3gammamolCmu-u2su-u1的季节性峰值,这大大低于2004年和2004年的峰值。 2006(-7至-8gammamolCmu-u2su-u1)。每月综合NEE的季节性峰值在2005年最低(-8.8g Cmu-u2monu-u1),在2004年最高(-34.3gCmu-u2monu-u1)。与2004年相比,由于土壤水分胁迫,2005年每月GEP和Rde的峰值降低了30%和20%以上。 SWC是调节COd2交换变化的重要环境因素。在小时尺度上,当SWC小于0.15mu3mu-u3时,白天NEE为正,当SWC从0.075增加到0.225mu3mu-u3时,Rde增至三倍。在月时间尺度上,SWC是控制每月COd2通量的主要因素,直到SWC超过18%为止,在低(LAI <0.5mu2mu-u2)和高(LAI> 0.5mu2mu-u2)范围内才有净碳吸收。在LAI中,SWC解释了每月NEE的大约71%和90%的变化,以及每月GEP的大约92%和82%的变化。除SWC外,NEE的光响应曲线还受空气温度的调节,因为它影响植物的光合作用能力以及土壤和植物呼吸的变化。克氏链球菌碳吸收的最佳空气温度为10-20oC,当空气温度超出此范围时,碳吸收的量级降低。解释了ET和COd2通量之间的密切关系,即ET是由SWC和Tda共同确定的。在月度尺度上,ET预测NEE变化62%,GEP变化78%,Rde变化85%。生长季节的累积ET和累积NEE紧密相关。最高的ET与2006年生长期的碳汇同时发生,而最低的ET在2005年导致最大的碳损失。

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