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Multi-decadal Changes in Water Table Levels Alter Peatland Carbon Cycling

机译:水位表水平的多层变化改变泥炭块碳循环

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Globally, peatlands store a large quantity of soil carbon that can be subsequently modified by hydrologic alterations from land-use change and climate change. However, there are many uncertainties in predicting how carbon cycling and greenhouse gas emissions are altered by long-term changes in hydrology. Therefore, the goal of this study was to quantify how multi-decadal manipulations of water table (WT) levels affected carbon cycling (plant production and net ecosystem exchange from three eddy covariance towers) in a peatland complex modified by levee construction, which created a wetter area up-gradient of the levee (mean WT was 12.1 cm below the surface), a dry area below the levee (36.8 cm), and an adjacent reference site not affected by the levee (21.6 cm). We found that mean total plant production was greatest in the reference site (311.9 g C m(-2) y(-1)), followed by the dry site (290.5 g C m(-2) y(-1)), and lowest in the wet site (227.1 g C m(-2) y(-1)). Net ecosystem exchange during the growing season was negative for all sites (sink), with the wet site having the greatest sink and the dry site having the lowest sink. Ecosystem respiration increased and CH4 emissions decreased with a decreasing WT level. This research demonstrates that human alteration of peatland WT levels can have long-term (> 50 years) consequences on peatland carbon cycling.
机译:在全球范围内,泥炭地储存了大量的土壤碳,随后可以通过来自土地利用变化和气候变化的水文改变来修改。然而,预测碳循环和温室气体排放是如何通过水文的长期变化改变的许多不确定性。因此,本研究的目的是量化水表(WT)水平的多数划分的操纵如何在由堤防建筑修改的泥炭地综合体中影响碳循环(来自三个涡旋间协方差塔)的碳循环(植物生产和净生态系统交流),该堤防建设产生了百叶(平均WT为12.1cm以下的左侧较湿度区域),堤坝下方的干燥区域(36.8cm),以及不受堤坝影响的相邻参考点(21.6厘米)。我们发现,参考点(311.9g C m(-2)y(-1)),其次是干位点(290.5g c m(-2)y(-1)),潮湿部位最低(227.1g C m(-2)y(-1))。在生长季节期间的净生态系统交易所对所有地点(水槽)负阴性,潮湿的部位具有最大的水槽和干燥的水槽。生态系统呼吸增加,CH4排放随着WT水平的降低而降低。该研究表明,泥炭地WT水平的人类改变可以长期(> 50年)对泥炭碳循环的后果。

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