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HTAP_v3排放镶嵌图:合并区域和全球月度排放(2000 - 2018年)以支持空气质量建模和政策制定。

The HTAP_v3 emission mosaic: merging regional and global monthly emissions (2000-2018) to support air quality modelling and policies.

作者信息

Crippa Monica, Guizzardi Diego, Butler Tim, Keating Terry, Wu Rosa, Kaminski Jacek, Kuenen Jeroen, Kurokawa Junichi, Chatani Satoru, Morikawa Tazuko, Pouliot George, Racine Jacinthe, Moran Michael D, Klimont Zbigniew, Manseau Patrick M, Mashayekhi Rabab, Henderson Barron H, Smith Steven J, Suchyta Harrison, Muntean Marilena, Solazzo Efisio, Banja Manjola, Schaaf Edwin, Pagani Federico, Woo Jung-Hun, Kim Jinseok, Monforti-Ferrario Fabio, Pisoni Enrico, Zhang Junhua, Niemi David, Sassi Mourad, Ansari Tabish, Foley Kristen

机构信息

European Commission, Joint Research Centre (JRC), Ispra, Italy.

Research Institute Sustainability, Helmholtz Centre Potsdam (RIFS Potsdam), 14467 Potsdam, Germany.

出版信息

Earth Syst Sci Data. 2023 Jun 29;15(6):2667-2694. doi: 10.5194/essd-15-2667-2023.

Abstract

This study, performed under the umbrella of the Task Force on Hemispheric Transport of Air Pollution (TF-HTAP), responds to the global and regional atmospheric modelling community's need of a mosaic emission inventory of air pollutants that conforms to specific requirements: global coverage, long time series, spatially distributed emissions with high time resolution, and a high sectoral resolution. The mosaic approach of integrating official regional emission inventories based on locally reported data, with a global inventory based on a globally consistent methodology, allows modellers to perform simulations of high scientific quality while also ensuring that the results remain relevant to policymakers. HTAP_v3, an ad hoc global mosaic of anthropogenic inventories, has been developed by integrating official inventories over specific areas (North America, Europe, Asia including Japan and South Korea) with the independent Emissions Database for Global Atmospheric Research (EDGAR) inventory for the remaining world regions. The results are spatially and temporally distributed emissions of SO, NO , CO, non-methane volatile organic compounds (NMVOCs), NH, PM, PM, black carbon (BC), and organic carbon (OC), with a spatial resolution of 0.1 × 0.1 and time intervals of months and years, covering the period 2000-2018 (https://doi.org/10.5281/zenodo.7516361, Crippa, 2023, https://edgar.jrc.ec.europa.eu/dataset_htap_v3, last access: June 2023). The emissions are further disaggregated into 16 anthropogenic emitting sectors. This paper describes the methodology applied to develop such an emission mosaic, reports on source allocation, differences among existing inventories, and best practices for the mosaic compilation. One of the key strengths of the HTAP_v3 emission mosaic is its temporal coverage, enabling the analysis of emission trends over the past 2 decades. The development of a global emission mosaic over such long time series represents a unique product for global air quality modelling and for better-informed policymaking, reflecting the community effort expended by the TF-HTAP to disentangle the complexity of transboundary transport of air pollution.

摘要

本研究是在空气污染半球传输特别工作组(TF-HTAP)的框架下开展的,旨在满足全球和区域大气建模界对符合特定要求的空气污染物镶嵌排放清单的需求:全球覆盖、长时间序列、具有高时间分辨率的空间分布排放以及高部门分辨率。将基于本地报告数据的官方区域排放清单与基于全球一致方法的全球清单相结合的镶嵌方法,使建模人员能够进行具有高科学质量的模拟,同时确保结果与政策制定者相关。HTAP_v3是一个人为排放清单的临时全球镶嵌清单,它是通过将特定区域(北美、欧洲、包括日本和韩国的亚洲)的官方清单与全球其他地区独立的全球大气研究排放数据库(EDGAR)清单整合而开发的。结果是二氧化硫、氮氧化物、一氧化碳、非甲烷挥发性有机化合物(NMVOCs)、氨、颗粒物、细颗粒物、黑碳(BC)和有机碳(OC)的时空分布排放,空间分辨率为0.1×0.1,时间间隔为月和年,涵盖2000 - 2018年期间(https://doi.org/10.5281/zenodo.7516361,Crippa,2023,https://edgar.jrc.ec.europa.eu/dataset_htap_v3,最后访问时间:2023年6月)。排放进一步细分为16个人为排放部门。本文描述了用于开发这种排放镶嵌清单的方法,报告了源分配、现有清单之间的差异以及镶嵌清单编制的最佳实践。HTAP_v3排放镶嵌清单的一个关键优势是其时间覆盖范围,能够分析过去20年的排放趋势。在如此长的时间序列上开发全球排放镶嵌清单是全球空气质量建模和更明智决策的独特产品,反映了TF-HTAP为理清空气污染跨界传输的复杂性所付出的集体努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/392f/11694899/5e8f8c2e2c69/nihms-2032476-f0001.jpg

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