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Carbon emissions and priming effects derived from crop residues and their responses to nitrogen inputs

Jianjun Qin; Na Chen; Kevin E. Scriber; Jinbo Liu; Zhiqiang Wang; Kangjie Yang; Huiqiang Yang; Fuhao Liu; Yuanyuan Ding; Junaid Latif; Hanzhong Jia
Global Change Biology · Vol. 30, Issue 1 · 2024

Abstract

Crop residue‐derived carbon (C) emissions and priming effects (PE) in cropland soils can influence the global C cycle. However, their corresponding generality, driving factors, and responses to nitrogen (N) inputs are poorly understood. As a result, the total C emissions and net C balance also remain mysterious. To address the above knowledge gaps, a meta‐analysis of 1123 observations, taken from 51 studies world‐wide, has been completed. The results showed that within 360 days, emission ratios of crop residues C (ER) ranged from 0.22% to 61.80%, and crop residues generally induced positive PE (+71.76%). Comparatively, the contribution of crop residue‐derived C emissions (52.82%) to total C emissions was generally higher than that of PE (12.08%), emphasizing the importance of reducing ER. The ER and PE differed among crop types, and both were low in the case of rice, which was attributed to its saturated water conditions. The ER and PE also varied with soil properties, as PE decreased with increasing C addition ratio in soils where soil organic carbon (SOC) was less than 10‰; in contrast, the opposite phenomenon was observed in soils with SOC exceeding 10‰. Moreover, N inputs increased ER and PE by 8.31% and 3.78%, respectively, which was predominantly attributed to (NH 4 ) 2 SO 4 . The increased PE was verified to be dominated by microbial stoichiometric decomposition. In summary, after incorporating crop residues, the total C emissions and relative net C balance in the cropland soils ranged from 0.03 to 23.47 mg C g −1 soil and 0.21 to 0.97 mg C g −1 residue‐C g −1 soil, respectively, suggesting a significant impact on C cycle. These results clarify the value of incorporating crop residues into croplands to regulate global SOC dynamics and help to establish while managing site‐specific crop return systems that facilitate C sequestration.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2024-01-01
Publication Year2024
Volume30
Issue1
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.17115
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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