首页> 外文期刊>The Science of the Total Environment >Fluvial dissolved organic carbon composition varies spatially and seasonally in a small catchment draining a wind farm and felled forestry
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Fluvial dissolved organic carbon composition varies spatially and seasonally in a small catchment draining a wind farm and felled forestry

机译:在一个流域的风电场和砍伐的森林中,一个小流域的河流溶解性有机碳成分在空间和季节上都会变化

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Assessing whether land use, from activities such as wind farm construction and tree-felling, impacts on terrestrial C delivery to rivers has focused on quantifying the loss of dissolved organic carbon (DOC), and not the composition changes. Here we explore how land use influences DOC composition by considering fluvial DOC concentration, [DOC], and spectrophotometric composition of a river draining a peat-rich catchment. We find that in this 5.7km2catchment differences occur in both the concentration and composition of the DOC in its sub-catchments. This is attributed to differences in how land was used: one tributary (D-WF) drains an area with wind farm construction and forestry in the headwaters, and one tributary (D-FF) drains an area with felled plantation trees. Generally, [DOC] in both streams showed similar seasonal variation, and autumn maxima. However, the felled catchment had greater mean [DOC] than the wind farm catchment. The SUVA254and E4/E6indicated DOC in both streams had similar aromaticity and fulvic:humic acid for most of the time, but SUVA410and E2/E4indicated less DOC humification in the felled catchment. This may be due to young DOC from the breakdown of residual branches and roots, or more humification in soils in the wind farm area. During the dry months, DOC composition showed more spatial variation: the D-WF DOC had smaller SUVA254(less total aromatic material) and SUVA410(fewer humic substances). The decreased E2/E4in both streams indicated the total aromatic carbon decreased more than humic substances content. Moreover, the larger E4/E6for D-WF in summer indicated that the humic substances were richer in fulvic acids than humic acids. Soil disturbance associated with forestry-felling likely contributed to the higher [DOC] and release of less-humified material in D-FF. This research indicates drivers of different DOC concentration and composition can exist even in small catchments.
机译:通过风电场建设和砍树等活动来评估土地使用是否对向河流输送陆地碳的影响集中在量化溶解有机碳(DOC)的损失上,而不是成分的变化上。在这里,我们通过考虑河流DOC浓度,[DOC]和排干泥炭流域的河流的分光光度组成,探讨土地利用如何影响DOC组成。我们发现在这个5.7平方公里的集水区中,其子集水区的DOC浓度和组成均存在差异。这归因于土地使用方式的差异:一个支流(D-WF)排泄了在上游源头具有风力发电场建设和林业的区域,而一个支流(D-FF)则排泄了具有砍伐的植树的区域。通常,两种溪流中的[DOC]表现出相似的季节变化和秋季最大值。但是,被砍伐的集水区的[DOC]比风电场集水区更大。在大多数情况下,两种流中的SUVA254和E4 / E6指示的DOC具有相似的芳香性和富维酸:腐殖酸,但是SUVA410和E2 / E4指示的是采伐流域的DOC腐殖化较少。这可能是由于残余树枝和根的分解导致年轻的DOC,或者是风电场地区土壤中的更多腐殖化。在干燥月份,DOC的组成表现出更大的空间变化:D-WF DOC的SUVA254(总芳香物质较少)和SUVA410(腐殖质较少)较小。两种流中E2 / E4的减少均表明总芳族碳的减少大于腐殖质含量。此外,夏季D-WF的E4 / E6值较大表明,腐殖质富黄酸比腐殖酸更丰富。与林业砍伐相关的土壤扰乱可能导致D-FF中较高的[DOC]和较低腐殖质的释放。这项研究表明,即使在小流域,也可能存在不同DOC浓度和组成的驱动因素。

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