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首页> 外文期刊>The Science of the Total Environment >Linking landscape heterogeneity with lake dissolved organic matter properties assessed through absorbance and fluorescence spectroscopy: Spatial and seasonal patterns in temperate lakes of Southern Andes (Patagonia, Argentina)
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Linking landscape heterogeneity with lake dissolved organic matter properties assessed through absorbance and fluorescence spectroscopy: Spatial and seasonal patterns in temperate lakes of Southern Andes (Patagonia, Argentina)

机译:通过吸光度和荧光光谱评估的湖泊溶解有机物特性与湖泊溶解有机物特性的连接景观异质性:南部南部温带的空间和季节性图案(巴塔哥尼亚,阿根廷)

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摘要

Hydrological connectivity between terrestrial and aquatic systems is influenced by landscape features. Topography. vegetation cover and type, lake morphometry and climate (seasonality, precipitation) drive the timing, concentration and quality of allochthonous dissolved organic matter (DOM) inputs to lakes, influencing lake metabolism. The impact of climate changes on terrestrial-aquatic linkages depends on regional trends and ecosystems properties. We examined how landscape heterogeneity affects lake DOM in pristine temperate headwater lakes located in sharp bioclimatic gradients at the leeward side of the southern Andes (Patagonia, Argentina), and predicted their potential responses to forecasted changes in regional climate. We assessed DOM properties of deep and shallow lakes spotted along precipitation and altitudinal gradients which reflect on vegetation heterogeneity. Lake DOM (concentration, and chromophoric and fluorescent properties) was related to terrestrial bioclimatic conditions, addressing also DOM bio- and photodegradation processes. Co-effects of climate and vegetation determined the quantity and quality of allochthonous DOM inputs. Higher terrestrial signs showed up at the wettest extreme of the gradient and during the rainy season, being attributable to higher hydrological land-water connectivity, and dense vegetation cover. Under drier conditions, DOM displayed higher photobleaching signs at spatial and temporal scales. The ratio between non-humic and terrestrial humic substances indicated that DOM biodegradation dominates in shallow forested lakes and photodegradation prevails in deep ones, whereas coupled photo- and biological processing shaped the DOM pool of high altitude lakes. Overall, DOM optical metrics captured landscape heterogeneity. Under the forecasted climate changes for Patagonia (decreasing precipitation and increasing temperature), piedmont lakes may experience lower hydrological connectivity, lower terrestrial inputs and, enhanced photobleaching usually associated with longer water residence time. In high altitude lakes, terrestrial DOM inputs are expected to increase due to the upward expansion of native deciduous forests, thus becoming more similar to lakes located lower in the landscape. (C) 2019 Elsevier B.V. All rights reserved.
机译:陆地和水生系统之间的水文连接受景观特征的影响。地形。植被覆盖和型,湖形态格术和气候(季节性,降水)驱动湖泊湖泊的同步,浓度和质量,影响湖泊代谢。气候变化对陆地治疗的影响取决于区域趋势和生态系统的性质。我们审查了景观异质性如何影响南部南部的Leeward侧面(巴塔哥尼亚,阿根廷)的尖锐生物思维湖中的普通温带湖泊中的湖泊Dom,并预测了对区域气候变化的潜在反应。我们评估了沿着沉淀和深度梯度的深层和浅湖的DOM属性,反映了植被异质性。湖北(浓度和发色团和荧光特性)与陆地生物融化条件有关,也有DOM生物和光降解过程。气候和植被的共同效应确定了各种DOM投入的数量和质量。较高的陆地标志在梯度的最潮湿的极端和雨季期间出现,可归因于更高的水文陆地水连接和茂密的植被覆盖物。在干燥条件下,DOM在空间和时间尺度上显示了更高的光博标志。非腐殖和陆地物质之间的比率表明DOM生物降解在浅埋湖泊中占据主导地位,光降解在深层中占上风,而耦合光照和生物加工成形为高空湖泊的DOM池。总体而言,Dom光学度量捕获景观异质性。根据预测的巴塔哥尼亚气候变化(降水量和温度越来越低),皮埃蒙特湖泊可能会越低的水文连通性,较低的地面投入,以及通常与较长的水停留时间相关的光漂白。在高海拔湖泊中,陆地DOM投入预计由于原生落叶林的向上扩张,因此与景观中较低的湖泊变得更加类似。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第10期|223-235|共13页
  • 作者单位

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad & Medioambiente INIBIOM GESAP Grp Ecol Sistemas Acuat Escala Paisaje Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Landscape heterogeneity; Lake dissolved organic matter; UV-visible and fluorescent spectroscopy; Climate seasonality; Allochthonous inputs; South temperate lakes;

    机译:景观异质性;湖溶解有机物;紫外线可见和荧光光谱;气候季节性;表发源性投入;南温带湖泊;

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