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Mining a Sea of Data: Deducing the Environmental Controls of Ocean Chlorophyll

机译:挖掘数据之海:推论海洋叶绿素的环境控制

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摘要

Chlorophyll biomass in the surface ocean is regulated by a complex interaction of physiological, oceanographic, and ecological factors and in turn regulates the rates of primary production and export of organic carbon to the deep ocean. Mechanistic models of phytoplankton responses to climate change require the parameterization of many processes of which we have limited knowledge. We develop a statistical approach to estimate the response of remote-sensed ocean chlorophyll to a variety of physical and chemical variables. Irradiance over the mixed layer depth, surface nitrate, sea-surface temperature, and latitude and longitude together can predict 83% of the variation in log chlorophyll in the North Atlantic. Light and nitrate regulate biomass through an empirically determined minimum function explaining nearly 50% of the variation in log chlorophyll by themselves and confirming that either light or macronutrients are often limiting and that much of the variation in chlorophyll concentration is determined by bottom-up mechanisms. Assuming the dynamics of the future ocean are governed by the same processes at work today, we should be able to apply these response functions to future climate change scenarios, with changes in temperature, nutrient distributions, irradiance, and ocean physics.
机译:地表海洋中的叶绿素生物量受生理,海洋和生态因素的复杂相互作用调节,进而调节有机碳向深海的初级生产和出口速度。浮游植物对气候变化的响应的力学模型需要对许多我们知之甚少的过程进行参数化。我们开发了一种统计方法来估算遥感海洋叶绿素对各种物理和化学变量的响应。辐照混合层深度,表面硝酸盐,海面温度以及纬度和经度共同可以预测北大西洋对数叶绿素变化的83%。轻和硝酸盐通过经验确定的最小函数调节生物量,从而解释了对数叶绿素自身的近50%的变化,并确认光或常量营养素经常受到限制,而叶绿素浓度的许多变化是由自下而上的机制决定的。假设未来海洋的动力学受当今工作的相同过程支配,我们应该能够将这些响应函数应用于未来的气候变化情景,包括温度,养分分布,辐照度和海洋物理的变化。

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