【2h】

Observing carbon cycle–climate feedbacks from space

机译:观察碳循环-来自太空的气候反馈

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摘要

The impact of human emissions of carbon dioxide and methane on climate is an accepted central concern for current society. It is increasingly evident that atmospheric concentrations of carbon dioxide and methane are not simply a function of emissions but that there are myriad feedbacks forced by changes in climate that affect atmospheric concentrations. If these feedbacks change with changing climate, which is likely, then the effect of the human enterprise on climate will change. Quantifying, understanding, and articulating the feedbacks within the carbon–climate system at the process level are crucial if we are to employ Earth system models to inform effective mitigation regimes that would lead to a stable climate. Recent advances using space-based, more highly resolved measurements of carbon exchange and its component processes—photosynthesis, respiration, and biomass burning—suggest that remote sensing can add key spatial and process resolution to the existing in situ systems needed to provide enhanced understanding and advancements in Earth system models. Information about emissions and feedbacks from a long-term carbon–climate observing system is essential to better stewardship of the planet.
机译:人类排放的二氧化碳和甲烷对气候的影响是当前社会公认的核心问题。越来越明显的是,大气中二氧化碳和甲烷的浓度不仅是排放的函数,而且由于影响大气浓度的气候变化而产生了无数种反馈。如果这些反馈可能随气候变化而变化,那么人类企业对气候的影响也将发生变化。如果我们要使用地球系统模型来指导有效的缓解机制,从而实现稳定的气候,那么在过程级量化,理解和阐明碳-气候系统中的反馈至关重要。使用基于空间的,更高分辨率的碳交换及其组成过程(光合作用,呼吸作用和生物质燃烧)的测量技术的最新进展表明,遥感技术可以为现有的原位系统增加关键的空间和过程分辨率,以增强理解和控制。地球系统模型的进步。有关长期碳-气候观测系统的排放和反馈的信息对于更好地管理地球至关重要。

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