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Chemostatic modes of the ocean-atmosphere-sediment system through Phanerozoic time

机译:远古生代时间以来海洋-大气-沉积物系统的化学模式

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The essential state of the Phanerozoic ocean-atmosphere system with respect to major lithophile and organic components can be bounded by sedimentary observational data and relatively few model assumptions. The model assumptions are in turn sufficient to constrain and compute the remaining fluxes that result in a comprehensive model describing atmospheric and oceanic evolutionary history over the past 500 m.y. that is in accord with the sedimentary observational data. Two central themes emerge. First, there is a strong coupling of the state of various reservoirs throughout the entire system imposed mainly by negative physical, chemical and biological feedbacks. Second, there is a significant overprint of 'physical' processes, such as weathering, by biologically-mediated processes and ecosystem evolution. Ultimately, the Phanerozoic is characterized by two modes of seawater major-ion chemistry, pH and carbonate saturation state, and atmospheric CO_2. Importantly, the transition between these two modes may result from the previous state of the system whose impacts lag by tens of millions of years. Thus, the instantaneous state of the system at any given point in time may reflect in part the 'memory' of a previous period when fluxes and processes were not in balance. The modern-day problem of ocean acidification mainly reflects the fact that human activities of fossil fuel burning and land use changes are resulting in geologically rapid releases of CO_2 to the atmosphere and its absorption by the surface ocean and does not reflect the longer term processes and feedbacks that led to the acidic oceans of the past.
机译:相对于主要的亲石性和有机成分,生代海洋-大气系统的基本状态可以由沉积观测数据和相对较少的模型假设来界定。反过来,模型假设足以约束和计算剩余通量,从而形成描述过去500 m.y大气和海洋演化历史的综合模型。这与沉积观测数据一致。出现了两个中心主题。首先,整个系统中各个储层的状态之间存在强烈的耦合,这主要是由负面的物理,化学和生物反馈引起的。其次,通过生物介导的过程和生态系统演化,“物理”过程(如风化)有大量叠印。最终,生代以海水主离子化学,pH和碳酸盐饱和状态以及大气CO_2两种模式为特征。重要的是,这两种模式之间的转换可能是由系统的先前状态引起的,其影响滞后了数千万年。因此,在任何给定的时间点,系统的瞬时状态可能会部分反映通量和过程不平衡的前一时期的“记忆”。现代的海洋酸化问题主要反映了这样一个事实,即人类化石燃料燃烧和土地用途的变化正在导致地质上二氧化碳迅速释放到大气中,并被表层海洋吸收,并没有反映出长期的过程和导致过去成为酸性海洋的反馈。

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