Page 81 - Read online
P. 81
Page 14 of 16 Cui et al. Carbon Footprints 2026, 5, 19
4. Dignac, M.; Derrien, D.; Barré, P.; et al. Increasing soil carbon storage: mechanisms, effects of agricultural practices and proxies. a
review. Agron. Sustain. Dev. 2017, 37, 14. DOI
5. Climate Change 2022: Mitigation of Climate Change. https://www.ipcc.ch/report/ar6/wg3/ (accessed 2026-04-10).
6. Chen, Y.; Chen, X.; Zheng, P.; et al. Value compensation of net carbon sequestration alleviates the trend of abandoned farmland: A
quantification of paddy field system in China based on perspectives of grain security and carbon neutrality. Ecol. Indic. 2022, 138,
108815. DOI
7. Cotrufo, M. F.; Lavallee, J. M. Soil organic matter formation, persistence, and functioning: a synthesis of current understanding to
inform its conservation and regeneration. Adv. Agron. 2022, 172, 1-66. DOI
8. Ma, M.; Yang, H.; Yang, J.; et al. Year-to-year variation in organic fertilization effects on soil carbon stabilization and microbial
networks. Front. Microbiol. 2025, 16, 1707995. DOI
9. Domeignoz-Horta, L. A.; Cappelli, S. L.; Shrestha, R.; et al. Plant diversity drives positive microbial associations in the rhizosphere
enhancing carbon use efficiency in agricultural soils. Nat. Commun. 2024, 15, 8065. DOI
10. Bughio, M. A.; Wang, P.; Meng, F.; et al. Neoformation of pedogenic carbonates by irrigation and fertilization and their contribution to
carbon sequestration in soil. Geoderma 2016, 262, 12-9. DOI
11. Batool, M.; Cihacek, L. J.; Alghamdi, R. S. Soil inorganic carbon formation and the sequestration of secondary carbonates in global
carbon pools: a review. Soil. Systems. 2024, 8, 15. DOI
12. Liao, Y.; Deng, L.; Huang, Y.; et al. Inorganic carbon should be considered for carbon sequestration in agricultural soils. Glob. Chang.
Biol. 2025, 31, e70160. DOI
13. Dina Ebouel, F. J.; Betsi, T. B.; Eze, P. N. Soil inorganic carbon: a review of global research trends, analytical techniques, ecosystem
functions and critical knowledge gaps. CATENA 2024, 242, 108112. DOI
14. Lal, R. Carbon management in agricultural soils. Mitig. Adapt. Strat. Glob. Change. 2006, 12, 303-22. DOI
15. Han, X.; Xu, C.; Dungait, J. A. J.; et al. Straw incorporation increases crop yield and soil organic carbon sequestration but varies under
different natural conditions and farming practices in China: a system analysis. Biogeosciences 2018, 15, 1933-46. DOI
16. Ferdush, J.; Paul, V. A review on the possible factors influencing soil inorganic carbon under elevated CO 2 . CATENA 2021, 204, 105434.
DOI
17. Meng, X.; Meng, F.; Chen, P.; Hou, D.; Zheng, E.; Xu, T. A meta-analysis of conservation tillage management effects on soil organic
carbon sequestration and soil greenhouse gas flux. Sci. Total. Environ. 2024, 954, 176315. DOI
18. Yang, L.; Chen, T. Y.; Li, Z. Y.; Muhammad, I.; Chi, Y. X.; Zhou, X. B. Straw incorporation and nitrogen fertilization regulate soil
quality, enzyme activities and maize crop productivity in dual maize cropping system. BMC. Plant. Biol. 2024, 24, 729. DOI
19. Bramble, S. E.; Ulrich, S.; Schöning, I.; et al. Formation of mineral-associated organic matter in temperate soils is primarily controlled
by mineral type and modified by land use and management intensity. Glob. Chang. Biol. 2024, 30, e17024. DOI
20. Shao, G.; Xu, Y.; Zhou, J.; et al. Enhanced soil organic carbon stability in rhizosphere through manure application. Soil. Tillage. Res.
2024, 244, 106223. DOI
21. Wu, J.; Cheng, X.; Liu, G. Increased soil organic carbon response to fertilization is associated with increasing microbial carbon use
efficiency: data synthesis. Soil. Biol. Biochem. 2022, 171, 108731. DOI
22. Tang, S.; Pan, W.; Yang, Y.; et al. Soil carbon sequestration enhanced by long-term nitrogen and phosphorus fertilization. Nat. Geosci.
2025, 18, 1005-13. DOI
23. Richy, E.; Fort, T.; Odriozola, I.; et al. Phosphorus limitation promotes soil carbon storage in a boreal forest exposed to long-term
nitrogen fertilization. Glob. Chang. Biol. 2024, 30, e17516. DOI
24. Frey, S. D.; Ollinger, S.; Nadelhoffer, K.; et al. Chronic nitrogen additions suppress decomposition and sequester soil carbon in
temperate forests. Biogeochemistry 2014, 121, 305-16. DOI
25. Ling, J.; Dungait, J. A. J.; Delgado-Baquerizo, M.; et al. Soil organic carbon thresholds control fertilizer effects on carbon accrual in
croplands worldwide. Nat. Commun. 2025, 16, 3009. DOI
26. Xie, J.; Chen, Y.; Huang, R.; et al. Long-term nitrogen application decreased mineral-associated organic carbon while increasing
particulate organic carbon in purple soil in southwest China. J. Environ. Manage. 2025, 373, 123455. DOI
27. Tao, J.; Fan, L.; Zhou, J.; Banfield, C. C.; Kuzyakov, Y.; Zamanian, K. Nitrification-induced acidity controls CO 2 emission from soil
carbonates. Soil. Biol. Biochem. 2024, 192, 109398. DOI
28. Sanderman, J. Can management induced changes in the carbonate system drive soil carbon sequestration? A review with particular focus
on Australia. Agric. Ecosyst. Environ. 2012, 155, 70-7. DOI
29. Lopez-sangil, L.; Rovira, P.; Casals, P. Decay and vertical reallocation of organic C, and its incorporation into carbonates, in agricultural
soil horizons at two different depths and rewetting frequencies. Soil. Biol. Biochem. 2013, 61, 33-44. DOI

