数字农科院2.0

Comparing carbon sequestration efficiency in chemically separated soil organic carbon fractions under long-term fertilization in three major Chinese croplands

文献类型: 外文期刊

作者: Hu Xu;Adnan Mustafa;Lu Zhang;Shaomin Huang;Hongjun Gao;Mohammad Tahsin Karimi Nezhad;Nan Sun;Minggang Xu

作者机构:

关键词: carbon sequestration efficiency;fertilization;long-term field experiment;organic carbon fractionation;organic carbon stability

期刊名称: Journal of Integrative Agriculture

ISSN: 2095-3119

年卷期: 2025 年 24 卷 7 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版) ; ; 农林核心(2024版)

摘要: The combined application of organic manure and chemical fertilizers is an effective way to enhance soil organic carbon (SOC) sequestration through its influences on organic carbon (OC) input and the stability of SOC fractions. However, there is limited information on the carbon sequestration efficiency (CSE) of chemically separated SOC fractions and its response to OC input under long-term fertilization regimes, especially at different sites. This study used three long-term fertilization experiments in Gongzhuling, Zhengzhou and Qiyang spanning 20 years to compare the stocks and CSE in four different OC fractions (very labile OC, labile OC, less labile OC, and non-labile OC) and their relationships with annual OC input. Three treatments of no fertilization (CK), chemical nitrogen, phosphorous, and potassium fertilizers (NPK), and chemical NPK combined with manure (NPKM) were employed. The results showed that compared with CK, NPKM resulted in enhanced SOC stocks and sequestration rates as well as CSE levels of all fractions irrespective of experimental site. Specifically for the very labile and non-labile OC fractions, NPKM significantly increased the SOC stocks by 43 and 83%, 77 and 86%, and 73 and 82% in Gongzhuling, Qiyang, and Zhengzhou relative to CK, respectively. However, the greatest changes in SOC stock relative to the initial value were associated with non-labile OC fractions in Gongzhuling, Zhengzhou, and Qiyang, which reached 6.65, 7.16, and 7.35 Mg ha–1 under NPKM. Similarly, the highest CSE was noted for non-labile OC fractions under NPKM followed sequentially by the very labile OC, labile OC, and less-labile OC fractions, however a CSE of 8.56% in the non-labile OC fraction for Gongzhuling was higher than the values of 6.10 and 4.61% in Zhengzhou and Qiyang, respectively. In addition, the CSE for the passive pool (very labile+labile OC fractions) was higher than the active pool (less-labile+non-labile OC fractions), with the highest value in Gongzhuling. The redundancy analysis revealed that the CSEs of fractions and pools were negatively influenced by annual OC input, mean annual precipitation and temperature, but positively influenced by the initial SOC and total nitrogen contents. This suggests that differential stability of sequestered OC is further governed by indigenous site characteristics and variable amounts of annual OC input.

分类号:

  • 相关文献

[1]磷肥对苜蓿根系发育的影响. 韩雪松. 2002

[2]Effects of Long-Term Organic Amendments on Soil Organic Carbon in a Paddy Field: A Case Study on Red Soil. Huang Qing-hai,Li Da-ming,Liu Kai-lou,Yu Xi-chu,Ye Hui-cai,Hu Hui-wen,Xu Xiao-lin,Wang Sai-lian,Zhou Li-jun,Duan Ying-hua,Zhang Wen-ju. 2014

[3]Effects Of Different Green Manure T.reatments On Soil Apparent N And P Balance Under A 34-Year Double-Rice Cropping System. Hong, X, Ma, C, Gao, JS, Su, SM, Li, T, Luo, ZC, Duan, R, Wang, YN, Bai, LY, Zeng, XB. 2019

[4]Both yields of maize and soybean and soil carbon sequestration in typical Mollisols cropland decrease under future climate change: SPACSYS simulation. Liang S.,Sun N.,Longdoz B.,Meersmans J.,Ma X.,Gao H.,Zhang X.,Qiao L.,Colinet G.,Xu M.,Wu L.. 2024

[5]Patterns and driving factors of soil organic carbon sequestration efficiency under various manure regimes across Chinese croplands. Ren, Fengling,Zhang, Ruqiang,Sun, Nan,Li, Yalin,Xu, Minggang,Zhang, Fusuo,Xu, Wen. 2024

[6]Hazards of toxic metal(loid)s: Exploring the ecological and health risk in soil–crops systems with long-term sewage sludge application. Shitao Gao,Yanmei Dong,Qingqi Jia,Shuxia Wu,Jiayun Bai,Chao Cui,Ying Li,Peng Zou,Miaoying An,Xinzhong Du,Hongbin Liu. 2024

[7]Long-term cultivation of indica–japonica hybrid rice reshapes the sustainability of rice systems by simultaneously enhancing yield, nitrogen use efficiency, and soil health. Jinjia Gan,Xinyue Xu,Sheng Tang,Kefeng Han,Tao Sun,Jinzhao Ma,Xiangde Yang,Xiu Liu,Haoran Fu,Zhihao Pang,Lingli Mao,Lianghuan Wu,Qingxu Ma. 2026

[8]Simulating maize (Zea mays L.) growth and yield, soil nitrogen concentration, and soil water content for a long-term cropping experiment in Ontario, Canada. Liu, S.,Liu, S.,Yang, J. Y.,Drury, C. F.,Reynolds, W. D.,Liu, H. L.. 2014

[9]Evident variations of fungal and actinobacterial cellulolytic communities associated with different humified particle-size fractions in a long-term fertilizer experiment. Zhang, Qian,Liang, Guoqing,Guo, Tengfei,He, Ping,Wang, Xiubin,Zhou, Wei.

[10]Heavymetal accumulation and source analysis in greenhouse soils of Wuwei District, Gansu Province, China. Bai, L. Y.,Zeng, X. B.,Su, S. M.,Duan, R.,Wang, Y. N.,Gao, X..

[11]Variable responses of ammonia oxidizers across soil particle-size fractions affect nitrification in a long-term fertilizer experiment. Zhang, Qian,Liang, Guoqing,Zhou, Wei,Myrold, David D..

[12]Reduced dependence of rhizosphere microbiome on plant-derived carbon in 32-year long-term inorganic and organic fertilized soils. Ai, Chao,Liang, Guoqing,Sun, Jingwen,Wang, Xiubin,He, Ping,Zhou, Wei,He, Xinhua,He, Ping,He, Xinhua,He, Xinhua.

[13]Effects of nitrogen application on flavor compounds of cherry tomato fruits. Wang, Yu-Tao,Huang, Shao-Wen,Liu, Rong-Le,Jin, Ji-Yun. 2007

[14]A distinctive root-inhabiting denitrifying community with high N2O/(N2O+N-2) product ratio. Ai, Chao,Liang, Guoqing,Wang, Xiubin,Sun, Jingwen,He, Ping,Zhou, Wei,He, Ping.

[15]Testing for soil carbon saturation behavior in agricultural soils receiving long-term manure amendments. Feng, W.,Plante, A. F.,Xu, M.,Fan, M.,Malhi, S. S.,Schoenau, J. J.,Six, J.. 2014

[16]Manure substitution of mineral fertilizers increased functional stability through changing structure and physiology of microbial communities. Yue, Xianlu,Shi, Andong,Yao, Shuihong,Zhang, Bin,Zhang, Jiguang.

[17]Alteration of soil bacterial interaction networks driven by different long-term fertilization management practices in the red soil of South China. Xun, Weibing,Li, Wei,Ren, Yi,Xiong, Wu,Ran, Wei,Shen, Qirong,Zhang, Ruifu,Xun, Weibing,Zhang, Ruifu,Huang, Ting,Li, Dongchu.

[18]Distribution of soil nutrients, extracellular enzyme activities and microbial communities across particle-size fractions in a long-term fertilizer experiment. Zhang, Qian,Zhou, Wei,Liang, Guoqing,Sun, Jingwen,Wang, Xiubin,He, Ping.

[19]Fertilization enhancing carbon sequestration as carbonate in arid cropland: assessments of long-term experiments in northern China. Wang, X. J.,Wang, J. P.,Wang, X. J.,Wang, X. J.,Xu, M. G.,Zhang, W. J.,Wang, J. P.,Yang, X. Y.,Huang, S. M.,Liu, H..

[20]Alteration of the soil bacterial community during parent material maturation driven by different fertilization treatments. Sun, Li,Xun, Weibing,Ran, Wei,Shen, Qirong,Zhang, Ruifu,Xun, Weibing,Zhang, Guishan,Zhang, Ruifu,Huang, Ting,Gao, Jusheng,Li, Dongchu.

作者其他论文 更多>>