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Influence of soil conditions on dissolved organic matter leached from forest and wetland soils: a controlled growth chamber study

机译:土壤条件对森林和湿地土壤溶解有机质的影响:一种受控增长室研究

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摘要

This study investigated the effects of various soil conditions, including drying-rewetting, nitrogen deposition, and temperature rise, on the quantities and the composition of dissolved organic matter leached from forest and wetland soils. A set of forest and wetland soils with and without the nitrogen deposition were incubated in the growth chambers under three different temperatures. The moisture contents were kept constant, except for two-week drying intervals. Comparisons between the original and the treated samples revealed that drying-rewetting was a crucial environmental factor driving changes in the amount of dissolved organic carbon (DOC). The DOC was also notably increased by the nitrogen deposition to the dry forest soil and was affected by the temperature of the dry wetland soil. A parallel factor (PARAFAC) analysis identified three sub-fractions of the fluorescent dissolved organic matter (FDOM) from the fluorescence excitation-emission matrices (EEMs), and their compositions depended on drying-rewetting. The data as a whole, including the DOC and PARAFAC components and other optical indices, were possibly explained by the two main variables, which were closely related with the PARAFAC components and DOC based on principal component analysis (PCA). Our results suggested that the DOC and PARAFAC component information could provide a comprehensive interpretation of the changes in the soil-leached DOM in response to the different environmental conditions.
机译:本研究研究了各种土壤条件的影响,包括干燥重新润湿,氮沉积和温度上升,从森林和湿地土壤浸出的溶解有机物质的数量和组合物上。在三种不同温度下的生长室中温育和没有氮沉积的一组森林和湿地污垢。除了为期两周的干燥间隔之外,水分含量保持恒定。原始和处理的样品之间的比较显示,干燥重新润湿是驱动溶解有机碳(DOC)量的关键环境因子。通过氮沉积对干林土壤的氮气沉积也显着增加,受干湿土壤温度的影响。平行因子(PARAFAC)分析确定了来自荧光激发 - 发射矩阵(EEM)的荧光溶解有机物(FDOM)的三个亚类,它们的组合物依赖于干燥重新润湿。整体的数据包括DOC和PARAFAC组件和其他光学指标,可能是由两个主要变量解释,这与基于主成分分析(PCA)的PARAFAC组件和DOC密切相关。我们的研究结果表明,DOC和PARAFAC组件信息可以全面地解释土壤浸出的DOM的变化,以应对不同的环境条件。

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