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Earth System Science Data
Earth System Science Data
Earth System Science Data
 

 

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red apples
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Fructose levels inred andgreen apples

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Anthocyanin biosynthesis inred apples

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Malic acid in greenapples

Open accessPublic peer reviewArticle level metricsModerate APCs
ESSD cover
Open accessPublic peer reviewArticle level metricsModerate APCsFinancial support
Chief editors: Kirsten Elger, Ken Mankoff, Graciela Raga, François G. Schmitt, Hanqin Tian & Yuyu Zhou
eISSN: ESSD1866-3516, ESSDD1866-3591

Earth System Science Data (ESSD) is an international, interdisciplinary journal for the publication of articles on original research data (sets), furthering the reuse of high-quality data of benefit to Earth system sciences. The editors encourage submissions on original data or data collections which are of sufficient quality and have potential to contribute to these aims. The journal maintains sections for regular-length articles, brief communications (e.g. on additions to data sets) and commentaries, as well as review articles and special issues.

Thisshort commentary draws on ESSD author, reviewer and editor experiences over its first 10 years of operation to define guidelines, requirements and benefits of the ESSD processes.

JIF
JIF11.2
JIF 5-year
JIF 5-year12.1
CiteScore
CiteScore18
Google h5-index
Google h5-index78

News

14 Mar 2025Global Carbon Budget 2024

A group of more than 100 researchers from more than 15 countries compiled and documented an annual global carbon budget covering sources and sinks. The results were published today in ESSD.

14 Mar 2025Global Carbon Budget 2024

A group of more than 100 researchers from more than 15 countries compiled and documented an annual global carbon budget covering sources and sinks. The results were published today in ESSD.

13 Mar 2025New agreement between California Digital Library and Copernicus Publications

We are delighted to announce a new agreement between the California Digital Library and Copernicus Publications. The University of California will cover 50% of article processing charges (APCs) for manuscripts affiliated with any of their research units. Read more.

13 Mar 2025New agreement between California Digital Library and Copernicus Publications

We are delighted to announce a new agreement between the California Digital Library and Copernicus Publications. The University of California will cover 50% of article processing charges (APCs) for manuscripts affiliated with any of their research units. Read more.

28 Feb 2025Get involved, become a referee, and help shape ESSD's community publication output

We are pleased to announce that a new referee application form is now available. This means that if you are interested in contributing to the peer-review process and supporting high-quality scientific publishing in your community then you can apply today to become a referee. Your expertise can make a difference. Visit the online formhere to learn more and join our reviewer community.

28 Feb 2025Get involved, become a referee, and help shape ESSD's community publication output

We are pleased to announce that a new referee application form is now available. This means that if you are interested in contributing to the peer-review process and supporting high-quality scientific publishing in your community then you can apply today to become a referee. Your expertise can make a difference. Visit the online formhere to learn more and join our reviewer community.

Recent papers

28 Mar 2025
P-LSHv2: a multi-decadal global daily land surface actual evapotranspiration dataset enhanced with explicit soil moisture constraints in remote sensing retrieval
Jin Feng, Ke Zhang, Lijun Chao, Huijie Zhan, and Yunping Li
Earth Syst. Sci. Data Discuss.,https://doi.org/10.5194/essd-2025-137,https://doi.org/10.5194/essd-2025-137, 2025
Preprint under review for ESSD(discussion: open, 0 comments)
Short summary
Short summary
Understanding how soil moisture affects evapotranspiration (ET) is essential for improving ET estimates. However, many global ET datasets overlook soil moisture constraints, causing large uncertainties. In this study, we developed an improved model that better captures the influence of soil moisture on vegetation and soil evaporation. Our model significantly improves ET estimation accuracy and provides a new long-term global ET dataset to support water cycle and climate research.
28 Mar 2025
Tracking vegetation phenology across diverse biomes using Version 3.0 of the PhenoCam Dataset
Adam M. Young, Thomas Milliman, Koen Hufkens, Keith Ballou, Christopher Coffey, Kai Begay, Michael Fell, Mostafa Javadian, Alison K. Post, Christina Schädel, Zakary Vladich, Oscar Zimmerman, Dawn M. Browning, Christopher R. Florian, Minkyu Moon, Michael D. SanClements, Bijan Seyednasrollah, Mark A. Friedl, and Andrew D. Richardson
Earth Syst. Sci. Data Discuss.,https://doi.org/10.5194/essd-2025-120,https://doi.org/10.5194/essd-2025-120, 2025
Preprint under review for ESSD(discussion: open, 0 comments)
Short summary
Short summary
Here, we describe the PhenoCam V3.0 public data release. The PhenoCam Network characterizes vegetation phenology in ecosystems across the US and around the world using repeat digital photography. This V3.0 release includes new additions to the data records (e.g., camera NDVI and simplified data sets) and provides >4800 site years of phenological time series and transition dates, a 170% increase relative to the previous data release (V2.0). Over 450 of the time series are 5 y or longer in length.
27 Mar 2025
Gridded rainfall erosivity (2014–2022) in mainland China using 1 min precipitation data from densely distributed weather stations
Yueli Chen, Yun Xie, Xingwu Duan, and Minghu Ding
Earth Syst. Sci. Data, 17, 1265–1274,https://doi.org/10.5194/essd-17-1265-2025,https://doi.org/10.5194/essd-17-1265-2025, 2025
Short summary
Short summary
Rainfall erosivity maps are crucial for identifying key areas of water erosion. Due to the limited historical precipitation data, there are certain biases in rainfall erosivity estimates in China. This study develops a new rainfall erosivity map for mainland China using 1 min precipitation data from 60 129 weather stations, revealing that areas exceeding 4000 MJ mm ha−1 h−1yr−1 of annual rainfall erosivity are mainly concentrated in southern China and on the southern Tibetan Plateau.
27 Mar 2025
A comprehensive integrated macroseismic dataset from multiple earthquake studies
Andrea Tertulliani, Andrea Antonucci, Filippo Bernardini, Viviana Castelli, Emanuela Ercolani, Laura Graziani, Alessandra Maramai, Martina Orlando, Antonio Rossi, and Tiziana Tuvè
Earth Syst. Sci. Data Discuss.,https://doi.org/10.5194/essd-2025-10,https://doi.org/10.5194/essd-2025-10, 2025
Preprint under review for ESSD(discussion: open, 0 comments)
Short summary
Short summary
We present the results of a rapid and reliable study of 45 Italian earthquakes and characterized by datasets with potential inconsistencies or inhomogeneities. The used methodology obviates the need for exhaustive earthquake re-evaluation, and it is particularly effective for the updating of medium-low events, with a large number of low-intensity data. The result is a new dataset very useful to improve “seismic histories” and to contribute to enhance the seismic hazard of an area.
26 Mar 2025
Revised and updated geospatial monitoring of 21st century forest carbon fluxes
David A. Gibbs, Melissa Rose, Giacomo Grassi, Joana Melo, Simone Rossi, Viola Heinrich, and Nancy L. Harris
Earth Syst. Sci. Data, 17, 1217–1243,https://doi.org/10.5194/essd-17-1217-2025,https://doi.org/10.5194/essd-17-1217-2025, 2025
Short summary
Short summary
Updated global maps of greenhouse gas (GHG) emissions and sequestration by forests from 2001 onwards using satellite-derived data show that forests are strong net carbon sinks, capturing about as much CO2 each year on average as the USA emitted from fossil fuels in 2019. After reclassifying fluxes to countries’ reporting categories for national GHG inventories, we found that roughly two-thirds of the net CO2 flux from forests is anthropogenic and one-third is non-anthropogenic.

Notice on the current situation in Ukraine

To show our support for Ukraine, all fees for papers from authors (first or corresponding authors) affiliated toUkrainian institutions are automatically waived, regardless if these papers are co-authored by scientists affiliated to Russian and/or Belarusian institutions. The only exception will be if the corresponding author or first contact (contractual partner of Copernicus) are from a Russian and/or Belarusian institution, in that case the APCs are not waived.

In accordance with current European restrictions, Copernicus Publications does not step into business relations with and issue APC-invoices (articles processing charges) toRussian and Belarusian institutions. The peer-review process and scientific exchange of our journals including preprint posting is not affected. However, these restrictions require that the first contact (contractual partner of Copernicus) has an affiliation and invoice address outside Russia or Belarus.


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