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Observing biogeochemical cycles at global scales with profiling floats and gliders: prospects for a global array

机译:使用剖面浮标和滑翔机在全球范围内观察生物地球化学循环:全球阵列的前景

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摘要

Chemical and biological sensor technologies have advanced rapidly in the past five years. Sensors that require low power and operate for multiple years are now available for oxygen, nitrate, and a variety of bio-optical properties that serve as proxies for important components of the carbon cycle (e.g., particulate organic carbon). These sensors have all been deployed successfully for long periods, in some cases more than three years, on platforms such as profiling floats or gliders. Technologies for pH, pCO2, and particulate inorganic carbon are maturing rapidly as well. These sensors could serve as the enabling technology for a global biogeochemical observing system that might operate on a scale comparable to the current Argo array. Here, we review the scientific motivation and the prospects for a global observing system for ocean biogeochemistry.
机译:化学和生物传感器技术在过去五年中发展迅速。现在,需要低功率且可运行多年的传感器可用于氧气,硝酸盐和多种生物光学特性,这些特性可作为碳循环重要组成部分(例如,颗粒有机碳)的代理。这些传感器已经成功部署了很长时间,在某些情况下已经超过三年,部署在轮廓浮标或滑翔机等平台上。 pH,pCO2和颗粒状无机碳的技术也在迅速成熟。这些传感器可以用作全球生物地球化学观测系统的使能技术,该系统的运行规模可与目前的Argo阵列相媲美。在这里,我们回顾了海洋生物地球化学全球观测系统的科学动机和前景。

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