Journal of Integrative Agriculture
|
2026, 25(9): 3853-3867
• Agro-ecosystem & Environment •
Integrative fertilizer nitrogen management mitigates nitrogen leaching and gray water footprint in a subtropical vegetable rotation system
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Fen Zhang1,2, Xiaopeng Gao3, Xiao Ma1,2, Hailing Cao1, Fabo Liu1,2, Tao Liang4, Xinping Chen1,2,5, Xiaozhong Wang1,2,5#
Affiliations
1College of Resources and Environment/Academy of Agricultural Sciences, Southwest University, Chongqing 400716, China
2Interdisciplinary Research Center for Agriculture Green Development in Yangtze River Basin, Southwest University, Chongqing 400716, China
3Department of Soil Science, University of Manitoba, Winnipeg, MB R3T2N2, Canada
4Chongqing Academy of Agriculture Sciences, Chongqing 400000, China
5Key Laboratory of Low-carbon Green Agriculture in Southwestern China of Ministry of Agriculture and Rural Affairs, Southwest University, Chongqing 400716, China
About Author:
Fen Zhang, E-mail: fenzhang007@163.com; #Correspondence Xiaozhong Wang, E-mail: wxz20181707@swu.edu.cn
doi: 10.1016/j.jia.2025.11.008
Outline
Nitrogen (N) leaching is a major pathway of N loss in subtropical crop production systems, contributing to groundwater pollution and thus posing serious threats to human health. However, the characteristics of annual N leaching in subtropical open-field vegetable systems and the effectiveness of integrative N fertilization management practices in reducing N leaching remain poorly understood. In this study, two plot-based field experiments were conducted with open-field Chinese cabbage–pepper rotation system in subtropical Southwest China to quantify annual N leaching and evaluate the effectiveness of integrated N fertilization management practices. Experiment 1 compared five N fertilizer application rates using conventional urea, while Experiment 2 compared different N sources including conventional urea, organic fertilizer, nitrification inhibitor-based fertilizer, and controlled-release urea which were all applied at the optimized N rate. Results showed that the annual N leaching under farmers’ N practice (FNP) was 251 kg N ha−1, with contributions of 55, 31, and 14% from the pepper season, Chinese cabbage season, and fallow period, respectively. Total N leaching increased exponentially with N rate. The seasonal N leaching factor was 32% for pepper and 17% for Chinese cabbage in the FNP treatment, respectively. Compared to FNP, optimizing N rate based on crop requirement and soil supply significantly reduced N leaching by 68% and gray water footprint by 66−75%, while improving N use efficiency (NUE) from 35 to 54%. In Experiment 2, mixing organic and inorganic fertilizers, applying nitrification inhibitor, and using controlled-release urea further reduced annual N leaching by 27, 54, and 25%, respectively, compared to conventional urea. These practices also improved crop yields by 2−11% and NUE by 10−13%, and lowered gray water footprint by 28−58%. In summary, integrative N stewardship practices, particularly use of nitrification inhibitors under optimized N rates, effectively reduced N leaching while achieving high NUE and vegetable yields, providing a promising strategy for sustainable subtropical vegetable production
enhanced efficiency fertilizer
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leaching factor
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marketable yield
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nitrogen balance
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nitrogen rate
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nitrogen use efficiency
Fen Zhang, Xiaopeng Gao, Xiao Ma, Hailing Cao, Fabo Liu, Tao Liang, Xinping Chen, Xiaozhong Wang.
Integrative fertilizer nitrogen management mitigates nitrogen leaching and gray water footprint in a subtropical vegetable rotation system[J].
Journal of Integrative Agriculture,
2026
, 25
(9)
: 3853
-3867
.
DOI: 10.1016/j.jia.2025.11.008
Year 2026 volume 25 Issue 9
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doi: 10.1016/j.jia.2025.11.008