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首页> 外文期刊>Atmospheric environment >Impact of air-borne or canopy-derived dissolved organic carbon (DOC)on forest soil solution DOC in Flanders, Belgium
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Impact of air-borne or canopy-derived dissolved organic carbon (DOC)on forest soil solution DOC in Flanders, Belgium

机译:空气传播或冠层溶解的有机碳(DOC)对比利时法兰德斯森林土壤溶液DOC的影响

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摘要

Dissolved organic carbon (DOC) in the soil solution of forests originates from a number of biologically and/or biochemically mediated processes, including litter decomposition and leaching, soil organic matter mineralization, root exudation, mucilage and microbial activity. A variable amount of DOC reaches the forest floor through deposition, but limited information is available about its impact on soil solution DOC. In this study, trends and patterns of soil solution DOC were evaluated in relation to deposition of DOC over an 11-year period (2002-2012) at five ICP Forests intensive monitoring plots in Flanders, northern Belgium. Trend analysis over this period showed an increase of soil solution DOC concentrations for all observed depth intervals. Fluxes of DOC increased in the organic layer, but were nearly stable in the mineral soil. Annual leaching losses of DOC were higher in coniferous (55-61 kg C ha~(-1)) compared to deciduous plots (19-30 kg C ha~(-1)) but embody less than 0.05% of total 1-m soil organic C stocks. Temporal deposition patterns could not explain the increasing trends of soil solution DOC concentrations. Deposition fluxes of DOC were strongly correlated with soil solution fluxes of DOC, but their seasonal peaks were not simultaneous, which confirmed that air-borne or canopy-derived DOC has a limited impact on soil solution DOC.
机译:森林土壤溶液中的溶解有机碳(DOC)来源于许多生物和/或生物化学介导的过程,包括凋落物分解和浸出,土壤有机质矿化,根系渗出,黏液和微生物活性。数量不等的DOC通过沉积到达森林底层,但是关于其对土壤溶液DOC的影响的信息有限。在这项研究中,评估了比利时北部佛兰德省的五个ICP森林密集监测区在11年期间(2002年至2012年)土壤溶液DOC的趋势和模式与DOC沉积的关系。在此期间的趋势分析表明,在所有观察到的深度间隔内,土壤溶液DOC的浓度均增加。 DOC的通量在有机层中增加,但在矿质土壤中几乎稳定。与落叶地(19-30 kg C ha〜(-1))相比,针叶林(55-61 kg C ha〜(-1))中DOC的年淋失量更高,但少于1-m总面积的0.05%土壤有机碳储量。时间沉积模式不能解释土壤溶液中DOC浓度的增加趋势。 DOC的沉积通量与DOC的土壤溶液通量密切相关,但它们的季节性峰值不是同时出现的,这表明空气传播或冠层的DOC对土壤溶液DOC的影响有限。

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