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COSORE: A community database for continuous soil respiration and other soil-atmosphere greenhouse gas flux data

机译:Cosore:一种社区数据库,用于连续土壤呼吸和其他土壤 - 大气温室气体通量数据

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Globally, soils store two to three times as much carbon as currently resides in the atmosphere, and it is critical to understand how soil greenhouse gas (GHG) emissions and uptake will respond to ongoing climate change. In particular, the soil-to-atmosphere CO(2)flux, commonly though imprecisely termed soil respiration (R-S), is one of the largest carbon fluxes in the Earth system. An increasing number of high-frequencyR(S)measurements (typically, from an automated system with hourly sampling) have been made over the last two decades; an increasing number of methane measurements are being made with such systems as well. Such high frequency data are an invaluable resource for understanding GHG fluxes, but lack a central database or repository. Here we describe the lightweight, open-source COSORE (COntinuous SOil REspiration) database and software, that focuses on automated, continuous and long-term GHG flux datasets, and is intended to serve as a community resource for earth sciences, climate change syntheses and model evaluation. Contributed datasets are mapped to a single, consistent standard, with metadata on contributors, geographic location, measurement conditions and ancillary data. The design emphasizes the importance of reproducibility, scientific transparency and open access to data. While being oriented towards continuously measuredR(S), the database design accommodates other soil-atmosphere measurements (e.g. ecosystem respiration, chamber-measured net ecosystem exchange, methane fluxes) as well as experimental treatments (heterotrophic only, etc.). We give brief examples of the types of analyses possible using this new community resource and describe its accompanying R software package.
机译:在全球范围内,土壤储存两到三倍的碳,因为目前在大气中居住,并且了解土壤温室气体(GHG)排放和摄取如何应对持续的气候变化至关重要。特别地,土壤至大气CO(2)通量通常虽然不切实义地称为土壤呼吸(R-S),是地球系统中最大的碳通量之一。在过去的二十年中已经制定了越来越多的高频测量(通常来自带有每小时采样的自动化系统);也可以使用这些系统进行越来越多的甲烷测量。这种高频数据是用于了解GHG通量的宝贵资源,但缺少中央数据库或存储库。在这里,我们描述了轻量级,开源潜水(连续土壤呼吸)数据库和软件,专注于自动化,连续和长期的GHG助气数据集,并旨在作为地球科学,气候变化合成的社区资源模型评估。贡献的数据集映射到单一,一致标准,具有贡献者,地理位置,测量条件和辅助数据的元数据。该设计强调重现性,科学透明度和对数据的开放访问的重要性。在持续测量仪的同时,数据库设计可容纳其他土壤 - 大气测量(例如生态系统呼吸,室测量的净生态系统交换,甲烷助核)以及实验治疗(仅仅是异养的等)。我们提供了使用此新社区资源的分析类型的简要示例,并描述其随附的R软件包。

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