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Global Emissions and Abundances of Chemically and Radiatively Important Trace Gases from the AGAGE Network

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Zenodo2025-06-13 更新2026-05-26 收录
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Global Emissions and Abundances of Chemically and Radiatively Important Gases from the AGAGE Network This data set provides annually updated estimates of global emissions and mole fraction trends for 42 compounds measured by the AGAGE network, including methane, nitrous oxide, chlorofluorocarbons, hydrochlorofluorocarbons, hydrofluorocarbons, perfluorocarbons, sulfur hexafluoride, nitrogen trifluoride, and selected other compounds. A full description of the data set are available in Western et al., 'Global Emissions and Abundances of Chemically and Radiatively Important Gases from the AGAGE Network', submitted to Earth System Science Data. Each compound has two directories, `inputs` and `outputs`. The `inputs` contain the semihemispheric mole fractions and a priori emissions used to derive the quantities in the `outputs` folder. The doi of the measurement data sets used are contained in the files `/inputs/*_obs_agage.csv` and can be downloaded here. AGAGE Data Policy These data are made available to the scientific community and public to improve understanding of climate change and ozone depletion and to lead to new scientific insights. AGAGE relies on the ethics and integrity of the user to ensure that AGAGE scientists receive fair credit for their work. If the data are obtained for potential use in a publication or presentation, AGAGE station PIs should be informed at the outset of the proposed work. Station PI contact information is located in the station pages. If the AGAGE data are essential to the work, co-authorship on publications may be appropriate. Manuscripts using the AGAGE data should be sent early to the AGAGE contacts for review before they are submitted for publication, so we can ensure that the quality and limitations of the data are accurately represented. Every effort is made to produce the most accurate and precise measurements possible. However, we reserve the right to make corrections to the data based on recalibration of standard gases or for other reasons deemed scientifically justified. We are not responsible for results and conclusions based on use of these data without regard to this warning. Reciprocity Agreement Use of these data implies an agreement to reciprocate. Laboratories making similar measurements agree to make their own data available to the general public and to the scientific community in an equally complete and easily accessible form. Scientists are encouraged to make available to the community, upon request, their own modelling tools used in the interpretation of the AGAGE data, namely well documented model code, transport fields, and additional information necessary for other scientists to repeat the work and to run modified versions. Acknowledgements Publications must state: “AGAGE is supported principally by the National Aeronautics and Space Administration (USA) grants to the Massachusetts Institute of Technology and the Scripps Institution of Oceanography." Additional statements must be included to acknowledge funding for the individual stations. These are located on the individual station pages. Citation of AGAGE Data (1) Cite the DOI of the dataset (2) Prinn, R.G., R.F. Weiss, J. Arduini, T. Arnold, H.L. DeWitt, P.J. Fraser, A.L. Ganesan, J. Gasore, C.M. Harth, O. Hermansen, J. Kim, P.B. Krummel, S. Li, Z. M. Loh, C.R. Lunder, M. Maione, A.J. Manning, B.R. Miller, B. Mitrevski, J. Mühle, S. O’Doherty, S. Park, S. Reimann, M. Rigby, T. Saito, P.K. Salameh, R. Schmidt, P.G. Simmonds, L.P. Steele, M.K. Vollmer, R.H. Wang, B. Yao, Y. Yokouchi, D. Young, and L. Zhou: History of chemically and radiatively important atmospheric gases from the Advanced Global Atmospheric Gases Experiment (AGAGE), Earth Syst. Sci. Data, 10, 985-1018, 2018, https://doi.org/10.5194/essd-10-985-2018. (3) Most recent AGAGE paper publishing the relevant data, as listed on AGAGE Publications.

# AGAGE网络的化学及辐射重要气体全球排放与丰度数据集 本数据集为AGAGE网络(Advanced Global Atmospheric Gases Experiment,先进全球大气气体实验网络)所观测的42种气体提供年度更新的全球排放估算值与摩尔分数趋势数据,涵盖甲烷、一氧化二氮、氯氟烃、氢氯氟烃、氢氟烃、全氟烃、六氟化硫、三氟化氮及其他选定化合物。 本数据集的完整说明可参见Western等人提交至《Earth System Science Data》的论文《Global Emissions and Abundances of Chemically and Radiatively Important Gases from the AGAGE Network》。 每种气体对应两个目录:`inputs`与`outputs`。其中`inputs`目录包含半半球摩尔分数与先验排放数据,用于推导`outputs`目录中的相关参数。 所用测量数据集的数字对象唯一标识符(DOI)存储于`/inputs/*_obs_agage.csv`文件中,可在此处下载。 ## AGAGE数据使用政策 本数据集向科学界与公众开放,旨在助力气候变化与臭氧消耗相关研究的深化,并推动新科学发现的产生。AGAGE网络依托使用者的学术伦理与诚信操守,以保障AGAGE科研人员的工作成果获得公正认可。 若您计划将本数据集用于论文撰写或学术汇报,请在项目启动之初告知AGAGE站点首席研究员(Principal Investigator,PI)。站点PI的联系方式可在各站点页面查询。若本数据集为研究工作的核心支撑,可考虑邀请AGAGE科研人员作为共同作者。使用本数据集的稿件在投稿前,请提前发送至AGAGE联络人进行审核,以确保数据的质量与局限性得到准确呈现。 本团队已尽最大努力保障测量数据的准确性与精密度。但我们保留基于标准气体重新校准或其他科学合理的理由对数据进行修正的权利。若使用者未遵循本声明使用数据并据此得出相关结果与结论,本团队不承担相应责任。 ## 互惠使用协议 使用本数据集即视为同意遵循互惠使用原则。开展同类大气测量的实验室需以同等完整且易于获取的形式,将自身数据向公众与科学界开放。鼓励科学家在收到请求时,向社区公开其用于解读AGAGE数据的建模工具,即具备完整文档说明的模型代码、输运场数据,以及其他可供其他科研人员复现实验与运行修改版程序所需的补充信息。 ## 致谢要求 发表相关成果时必须注明:"AGAGE is supported principally by the National Aeronautics and Space Administration (USA) grants to the Massachusetts Institute of Technology and the Scripps Institution of Oceanography." 此外还需补充说明各站点的资助来源,相关信息可在各站点页面查询。 ## AGAGE数据集引用规范 1. 引用本数据集的数字对象唯一标识符(DOI) 2. Prinn, R.G. 等:Prinn, R.G., R.F. Weiss, J. Arduini, T. Arnold, H.L. DeWitt, P.J. Fraser, A.L. Ganesan, J. Gasore, C.M. Harth, O. Hermansen, J. Kim, P.B. Krummel, S. Li, Z. M. Loh, C.R. Lunder, M. Maione, A.J. Manning, B.R. Miller, B. Mitrevski, J. Mühle, S. O’Doherty, S. Park, S. Reimann, M. Rigby, T. Saito, P.K. Salameh, R. Schmidt, P.G. Simmonds, L.P. Steele, M.K. Vollmer, R.H. Wang, B. Yao, Y. Yokouchi, D. Young, 及 L. Zhou: *History of chemically and radiatively important atmospheric gases from the Advanced Global Atmospheric Gases Experiment (AGAGE)*, *Earth Syst. Sci. Data*, 10, 985-1018, 2018, https://doi.org/10.5194/essd-10-985-2018 3. 引用发表相关数据的最新AGAGE学术论文,相关列表可在AGAGE出版物页面查询。

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2025-06-13
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