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Interacting effects of climate and agriculture on fluvial DOM in temperate and subtropical catchments

机译:气候和农业对温带和亚热带流域河流DOM的相互作用

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Dissolved organic matter (DOM) is an important factor in aquatic ecosystems, which is involved in a large variety of biogeochemical and ecological processes, and recent literature suggests that it could be strongly affected by agriculture in different climates. Based on novel monitoring techniques, we investigated the interaction of climate and agriculture effects on DOM quantity and quality. To examine this, we took water samples over 2 years in two paired intensive and extensive farming catchments in each of Denmark (temperate climate) and Uruguay (subtropical climate). We measured dissolved organic carbon (DOC) and nitrogen (DON) concentrations and DOC and DON molecular fractions with size-exclusion chromatography. Moreover, we characterized DOM quality with absorbance and fluorescence measurements, as well as parallel factor analysis (PARAFAC). We also calculated the DOC and DON loads based on daily discharge measurements, as well as measured precipitation and air temperature. The fluvial DOM in the catchments in Uruguay was characterized by higher temporal variability of DOC and DON loads which were clearly to a higher temporal variability of precipitation and a DOM composition with rather plant-like character relative to the Danish catchments. Moreover, we found a consistently higher temporal variability of DOC and DON loads in the intensive farming catchments than in the extensive farming catchments, with highest temporal variability in the Uruguayan intensive farming catchment. Furthermore, the composition of DOM exported from the intensive farming catchments was consistently complex and always related to microbial processing in both Denmark and Uruguay. This was indicated by low C : N ratios, several spectroscopic DOM composition indices and PARAFAC fluorescence components. We propose that the consistent effect of intensive farming on DOM composition and the temporal variability of DOC and DON loads is related to similarities in the management of agriculture, which may have widescale implications for fluvial DOM composition, as well as related ecological processes and biogeochemical cycles.
机译:溶解有机物(DOM)是水生生态系统中的重要因素,它参与了各种各样的生物地球化学和生态过程,最近的文献表明,农业可能会在不同的气候条件下对其产生强烈影响。基于新颖的监测技术,我们研究了气候和农业对DOM数量和质量的相互作用。为了检验这一点,我们在丹麦(温带气候)和乌拉圭(亚热带气候)的两个成对的集约化和粗养农业集水区中抽取了两年来的水样。我们使用尺寸排阻色谱法测量了溶解有机碳(DOC)和氮(DON)的浓度以及DOC和DON分子分数。此外,我们通过吸光度和荧光测量以及平行因素分析(PARAFAC)来表征DOM质量。我们还基于每日排放测量值以及测得的降水量和气温计算了DOC和DON负荷。乌拉圭流域的河流DOM具有DOC和DON负荷较高的时间变化性,这显然是降水的较高时间变化性和相对于丹麦流域具有类似植物特征的DOM组成。此外,我们发现,集约化农业流域的DOC和DON负载的时间变异性始终高于集约化农业流域,而乌拉圭集约化农业流域的时间变异性最高。此外,从集约化农业流域出口的DOM的成分一直很复杂,并且始终与丹麦和乌拉圭的微生物加工有关。低的C:N比,几种光谱DOM组成指数和PARAFAC荧光组分表明了这一点。我们建议集约化耕作对DOM组成以及DOC和DON负载的时间变化的持续影响与农业管理中的相似性有关,这可能对河流DOM组成以及相关的生态过程和生物地球化学循环具有广泛的意义。 。

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