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Using the INCA-Hg model of mercury cycling to simulate total and methyl mercury concentrations in forest streams and catchments

机译:使用INCA-Hg汞循环模型模拟森林溪流和流域中的总汞和甲基汞浓度

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摘要

We present a new, catchment-scale, process-based dynamic model for simulating mercury (Hg) in soils and surface waters. The Integrated Catchments Model for Mercury (INCA-Hg) simulates transport of gaseous, dissolved and solid Hg and transformations between elemental (Hg~0), ionic (Hg(II)) and methyl (MeHg) Hg in natural and semi-natural landscapes. The mathematical description represents the model as a series of linked, first-order differential equations describing chemical and hydrological processes in catchment soils and waters which we believe control surface water Hg dynamics. The model simulates daily time series between one and 100 years long and can be applied to catchments ranging in size from < 1 to -10,000 km~2. Here we present applications of the model to two boreal forest headwater catchments in central Canada where we were able to reproduce observed patterns of stream water total mercury (THg) and MeHg fluxes and concentrations. Model performance was assessed using Monte Carlo techniques. Simulated in-stream THg and MeHg concentrations were sensitive to hydrologic controls and terrestrial and aquatic process rates.
机译:我们提出了一种新的,基于流域规模,基于过程的动态模型,用于模拟土壤和地表水中的汞(Hg)。汞综合汇流模型(INCA-Hg)模拟自然和半自然景观中气态,溶解态和固态汞的迁移以及元素(Hg〜0),离子(Hg(II))和甲基(MeHg)Hg之间的转化。数学描述将模型表示为一系列链接的一阶微分方程,描述了集水区土壤和水域中的化学和水文过程,我们相信这些过程控制着地表水汞动力学。该模型模拟了1到100年之间的每日时间序列,可用于集水区,范围从<1到-10,000 km〜2。在这里,我们介绍了该模型在加拿大中部两个北方森林上游水源流域的应用,在那里我们能够重现观察到的溪流总汞(THg)以及MeHg通量和浓度的模式。使用蒙特卡洛技术评估模型性能。模拟的河流中THg和MeHg浓度对水文控制以及陆地和水生过程速率敏感。

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