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Bottom RedOx Model (BROM v.1.1): a coupled benthic–pelagic model for simulation of water and sediment biogeochemistry

机译:底部RedOx模型(BROM v.1.1):底栖-上层耦合模型,用于模拟水和沉积物的生物地球化学

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Interactions between seawater and benthic systems play an important role in global biogeochemical cycling. Benthic fluxes of some chemical elements (e.g., C, N, P, O, Si, Fe, Mn, S) alter the redox state and marine carbonate system (i.e., pH and carbonate saturation state), which in turn modulate the functioning of benthic and pelagic ecosystems. The redox state of the near-bottom layer in many regions can change with time, responding to the supply of organic matter, physical regime, and coastal discharge. We developed a model (BROM) to represent key biogeochemical processes in the water and sediments and to simulate changes occurring in the bottom boundary layer. BROM consists of a transport module (BROM-transport) and several biogeochemical modules that are fully compatible with the Framework for the Aquatic Biogeochemical Models, allowing independent coupling to hydrophysical models in 1-D, 2-D, or 3-D. We demonstrate that BROM is capable of simulating the seasonality in production and mineralization of organic matter as well as the mixing that leads to variations in redox conditions. BROM can be used for analyzing and interpreting data on sediment–water exchange, and for simulating the consequences of forcings such as climate change, external nutrient loading, ocean acidification, carbon storage leakage, and point-source metal pollution.
机译:海水和底栖系统之间的相互作用在全球生物地球化学循环中起着重要作用。一些化学元素(例如,C,N,P,O,Si,Fe,Mn,S)的底通量会改变氧化还原态和海洋碳酸盐体系(即pH和碳酸盐饱和态),进而调节水的功能。底栖和中上层生态系统。在许多区域,近底层的氧化还原状态会随着时间而变化,从而响应有机物的供应,物理状态和沿海排放。我们开发了一个模型(BROM),以表示水和沉积物中的关键生物地球化学过程,并模拟底部边界层中发生的变化。 BROM由一个运输模块(BROM-transport)和几个与水生生物地球化学模型框架完全兼容的生物地球化学模块组成,从而可以独立耦合至1-D,2-D或3-D水文模型。我们证明BROM能够模拟有机物生产和矿化的季节性以及导致氧化还原条件变化的混合。 BROM可用于分析和解释沉积物-水交换的数据,并模拟强迫作用的后果,例如气候变化,外部养分负荷,海洋酸化,碳储存泄漏和点源金属污染。

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