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Environmental Controls on the Riverine Export of Dissolved Black Carbon

机译:河流出口溶解黑碳的环境管制

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Each year, tropical rivers export a dissolved organic carbon (DOC) flux to the global oceans that is equivalent to similar to 4% of the global land sink for atmospheric CO2. Among the most refractory fractions of terrigenous DOC is dissolved black carbon (DBC), which constitutes similar to 10% of the total DOC flux and derives from the charcoal and soot (aerosol) produced during biomass burning and fossil fuel combustion. Black carbon (BC) has disproportionate storage potential in oceanic pools and so its export has implications for the fate and residence time of terrigenous organic carbon (OC). In contrast to bulk DOC, there is limited knowledge of the environmental factors that control riverine fluxes of DBC. We thus completed a comprehensive assessment of the factors controlling DBC export in tropical rivers with catchments distributed across environmental gradients of hydrology, topography, climate, and soil properties. Generalized linear models explained 70 and 64% of the observed variance in DOC and DBC concentrations, respectively. DOC and DBC concentrations displayed coupled responses to the dominant factors controlling their riverine export (soil moisture, catchment slope, and catchment stocks of OC or BC, respectively) but varied divergently across gradients of temperature and soil properties. DBC concentrations also varied strongly with aerosol BC deposition rate, indicating further potential for deviation of DBC fluxes from those of DOC due to secondary inputs of DBC from this unmatched source. Overall, this study identifies the specific drivers of BC dynamics in river catchments and fundamentally enhances our understanding of refractory DOC export to the global oceans.
机译:每年,热带河流将溶解的有机碳(DOC)通量导出到全球海洋,相当于与大气二氧化碳的全球陆地汇的4%相似。在贫瘠的DOC的最耐火级分之一是溶解的黑碳(DBC),其构成类似于总DOC通量的10%,并从生物质燃烧和化石燃料燃烧期间产生的木炭和烟灰(气溶胶)。黑碳(BC)在海洋游泳池中具有不成比例的储存潜力,因此其出口对人民有机碳(OC)的命运和停留时间有影响。与Bulk Doc相比,了解控制DBC河流通量的环境因素有限。因此,我们完成了对热带河流中DBC出口的因素进行了全面评估,其中集水区分布在水文,地形,气候和土壤性质的环境梯度。广义的线性模型分别解释了DOC和DBC浓度观察到的70%和64%。 DOC和DBC浓度显示出对控制其河流出口(分别的土壤湿度,集水区和COC或BC的集水区股)的主导因素的耦合响应,但在温度和土壤性质的梯度越差地变化。 DBC浓度也与气溶胶BC沉积速率强烈变化,表明由于DBC的次级输入来自该无与伦比的来源,进一步的DBC通量偏离DBC通量的可能性。总体而言,本研究确定了河流集水区中BC动力学的具体驱动因素,从根本上提高了我们对全球海洋的耐火软化博士的理解。

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