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Total organic carbon concentrations in ecosystem solutions of a remote tropical montane forest respond to global environmental change

机译:远程热带蒙太金森林生态系统解决方案中的总有机碳浓度应对全球环境变化

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The response of organic carbon (C) concentrations in ecosystem solutions to environmental change affects the release of dissolved organic matter (DOM) from forests to surface and groundwaters. We determined the total organic C (TOC) concentrations (filtered <1-7 mu m) and the ratios of TOC/dissolved organic nitrogen (DON) concentrations, electrical conductivity (EC), and pH in all major ecosystem solutions of a tropical montane forest from 1998 to 2013. The forest was located on the rim of the Amazon basin in Ecuador and experienced increasing numbers of days with >25 degrees C, decreasing soil moisture, and rising nitrogen (N) deposition from the atmosphere during the study period. In rainfall, throughfall, mineral soil solutions (at the 0.15- and 0.30-m depths), and streamflow, TOC concentrations and fluxes decreased significantly from 1998 to 2013, while they increased in stemflow. TOC/DON ratios decreased significantly in rainfall, throughfall, soil solution at the 0.15-m depth, and streamflow. Based on Delta C-14 values, the TOC in rainfall and mineral soil solutions was 1 year old and that of litter leachate was 10 years old. The pH in litter leachate decreased with time, that in mineral soil solutions increased, while those in the other ecosystem solutions did not change. Thus, reduced TOC solubility because of lower pH values cannot explain the negative trends in TOC concentrations in most ecosystem solutions. The increasing TOC concentrations and EC in stemflow pointed at an increased leaching of TOC and other ions from the bark. Our results suggest an accelerated degradation of DOM, particularly of young DOM, associated with the production of N-rich compounds simultaneously to changing climatic conditions and increasing N availability. Thus, environmental change increased the CO(2)release to the atmosphere but reduced DOM export to surface and groundwater.
机译:有机碳(C)浓度在生态系统溶液中对环境变化的响应会影响来自森林的溶解有机物质(DOM)到表面和地下水。我们确定了热带蒙太烷的所有主要生态系统溶液中的TOC /溶解有机氮(DON)浓度,电导率(EC)和pH的总有机C(TOC)浓度(过滤1-7μm)和TOC /溶解的有机氮(DON)浓度的比例森林从1998年到2013年。森林位于厄瓜多尔亚马逊盆地的边缘,经历了越来越多的天数> 25摄氏度,降低土壤水分,在研究期间从大气中上升氮气(n)沉积。在降雨中,渗透率,矿物土壤溶液(在0.15-和0.30米深度),流出,TOC浓度和助熔剂从1998年到2013年显着降低,而它们在茎流量上增加。 Roc / Don比率在降雨中显着下降,渗透率,0.15米深度的土壤溶液和流出。基于Delta C-14值,降雨和矿物土壤溶液中的TOC为1岁,凋落物渗滤液10岁。凋落物渗滤液中的pH随时间下降,即在矿物土壤溶液中增加,而其他生态系统解决方案的那些则没有改变。因此,由于较低的pH值,降低了TOC溶解度,不能解释大多数生态系统解决方案中TOC浓度的负趋势。茎流量的增加的TOC浓度和eC指向GARC和其他离子的其他离子的浸出增加。我们的研究结果表明,与富含N-Rich化合物的幼年DOM的DOM,尤其是富含活泼的化合物的加速降解,同时改变气候条件并增加N个可用性。因此,环境变化增加了CO(2)释放到大气中,但将DOM出口减少到表面和地下水。

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