Mapping turnover of dissolved organic carbon in global topsoil
Zhigang Guo
1, 2
,
Yihui Wang
3
,
Jianzhao Liu
1, 2
,
Liyuan He
3
,
Xinhao Zhu
3
,
Yunjiang Zuo
1, 2
,
Nannan Wang
1
,
F.-M Yuan
1
,
Youwen Sun
1
,
Li-Hua Zhang
4
,
Yao Song
1
,
Changchun Song
1
,
Xiaofeng Xu
3
Publication type: Journal Article
Publication date: 2024-01-01
scimago Q1
wos Q1
SJR: 2.137
CiteScore: 16.4
Impact factor: 8.0
ISSN: 00489697, 18791026
PubMed ID:
37804970
Environmental Chemistry
Environmental Engineering
Pollution
Waste Management and Disposal
Abstract
Dissolved organic carbon (DOC), the labile fraction of organic carbon, is a predominant substrate for microbes. Therefore, the turnover of DOC dominates microbial respiration in soils. We compiled a global dataset (1096 data points) of the turnover rates of DOC in 0-30 cm soil profiles and integrated the data with a machine learning algorithm to develop a global map of DOC turnover rate in global topsoil. The global DOC turnover rate in 0-30 cm soil was averaged as 0.0087 day-1, with a considerable variation among biomes. The fastest DOC turnover rate was found in tropical forests (0.0175 day-1) and the lowest in tundra (0.0036 day-1), exhibiting a declining trend from low to high latitudes. The DOC turnover rate is primarily controlled by edaphic and climate factors, as confirmed by the analyses with the structural equation model and the Mental's test. With a machine learning algorithm, we produced global maps of DOC turnover rate at a monthly scale, which were further combined with a global dataset of DOC density to produce monthly maps of carbon mineralization from DOC turnover in topsoil. The annual carbon release from DOC was estimated as 27.98 Pg C year-1 from topsoil across the globe, with the largest contribution from forest biomes, followed by pasture and grassland. Tundra released the least carbon from DOC due to its low turnover rate suppressed by low temperatures. The biome- and global-scale information of DOC turnover rate and carbon release from DOC provide a benchmark for ecosystem models to better project soil carbon dynamics and their contributions to global carbon cycling in the changing environment.
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Metrics
6
Total citations:
6
Citations from 2024:
5
(100%)
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GOST
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Guo Z. et al. Mapping turnover of dissolved organic carbon in global topsoil // Science of the Total Environment. 2024. Vol. 906. p. 167621.
GOST all authors (up to 50)
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Guo Z., Wang Y., Liu J., He L., Zhu X., Zuo Y., Wang N., Yuan F., Sun Y., Zhang L., Song Y., Song C., Xu X. Mapping turnover of dissolved organic carbon in global topsoil // Science of the Total Environment. 2024. Vol. 906. p. 167621.
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RIS
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TY - JOUR
DO - 10.1016/j.scitotenv.2023.167621
UR - https://doi.org/10.1016/j.scitotenv.2023.167621
TI - Mapping turnover of dissolved organic carbon in global topsoil
T2 - Science of the Total Environment
AU - Guo, Zhigang
AU - Wang, Yihui
AU - Liu, Jianzhao
AU - He, Liyuan
AU - Zhu, Xinhao
AU - Zuo, Yunjiang
AU - Wang, Nannan
AU - Yuan, F.-M
AU - Sun, Youwen
AU - Zhang, Li-Hua
AU - Song, Yao
AU - Song, Changchun
AU - Xu, Xiaofeng
PY - 2024
DA - 2024/01/01
PB - Elsevier
SP - 167621
VL - 906
PMID - 37804970
SN - 0048-9697
SN - 1879-1026
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2024_Guo,
author = {Zhigang Guo and Yihui Wang and Jianzhao Liu and Liyuan He and Xinhao Zhu and Yunjiang Zuo and Nannan Wang and F.-M Yuan and Youwen Sun and Li-Hua Zhang and Yao Song and Changchun Song and Xiaofeng Xu},
title = {Mapping turnover of dissolved organic carbon in global topsoil},
journal = {Science of the Total Environment},
year = {2024},
volume = {906},
publisher = {Elsevier},
month = {jan},
url = {https://doi.org/10.1016/j.scitotenv.2023.167621},
pages = {167621},
doi = {10.1016/j.scitotenv.2023.167621}
}
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