数字农科院2.0

Potential of optimizing irrigation and fertilization management for sustainable rice production in China

文献类型: 外文期刊

作者: Lianhua Liu;Zhongmin Lian;Wei Ouyang;Lingling Yan;Hongbin Liu;Fanghua Hao

作者机构:

关键词: Economic assessment;N loss;Optimal N management;Paddy fields;Water-saving irrigation

期刊名称: Journal of Cleaner Production

ISSN: 0959-6526

年卷期: 2023 年 432 卷

页码:

收录情况: SCIE(2023版) ; ; EI(2023版)

摘要: Flood irrigation and excessive nitrogen (N) fertilizers, which are often applied to paddy fields in China, may exacerbate irrigation water shortages, increase production costs, and cause environmental degradation. However, the effects of optimizing irrigation and fertilization management on N loss in paddy fields across China have not been evaluated comprehensively. In this study, we collected the data for synthetic N fertilizer application and irrigation water consumption in the paddy fields of China from 1979 to 2020 and 2004 to 2020, respectively. Synthetic N fertilizer use and irrigation water consumption in China increased by 145% and 54% during these periods, respectively. Based on the N fertilization rate and irrigation regimes, we constructed a N loss model and estimated the synthetic fertilizer-induced N loss from paddy fields. The N loss from paddy fields increased rapidly in 1979–1998, followed by significant fluctuations in 1998–2007, reaching a peak of 1.65 Tg in 2007 and decreasing steadily to 1.03 Tg in 2020. Notably, ammonia (NH3) volatilization was the dominant pathway of total N loss, followed by N runoff, N leaching, and nitrous oxide (N2O) emissions, contributing to 60.15%, 23.69%, 15.04% and 1.12% of the total loss on average, respectively. High N loss rates mainly occurred in the Yangtze river basin and Southeast coastal rice regions. When applying the optimal N management, water-saving irrigation regimes, and a combination of optimal N and water management, the N loss would decrease by 18.15%, 10.36%, and 26.29%, respectively. By the wide application of optimal N and water management, the N fertilizer use, irrigation water consumption, and N loss were likely to decrease by 0.55 Tg yr−1, 1.55 × 109 yuan yr−1, and 0.36 Tg N yr−1, respectively. Consequently, the net economic benefit rates became positive at the national scale, with the cost of N loss and water consumption reductions being 30.14% and 26.41%, respectively. Our study confirms that optimizing N application and irrigation management in paddy fields has noticeable potential to ensure the green agricultural sustainability and food security in China.

分类号:

  • 相关文献

[1]Estimating Regional N Application Rates For Rice In China Based On Target Yield, Indigenous N Supply, And N Loss. Ding, WC, Xu, XP, He, P, Zhang, JJ, Cui, ZL, Zhou, W. 2020

[2]Arbuscular mycorrhizal fungi reduce ammonia emissions under different land-use types in agro-pastoral areas. Huaisong WANG,Rui GUO,Yibo TIAN,Nan CUI,Xinxin WANG,Lei WANG,Zhongbao YANG,Shuying LI,Jixun GUO,Lianxuan SHI,Tao ZHANG. 2024

[3]Treated domestic sewage irrigation significantly decreased the CH4, N2O and NH3 emissions from paddy fields with straw incorporation. Wang, Shaohua,Xu, Shanshan,Hou, Pengfu,Xue, Lihong,Yang, Linzhang.

[4]Comprehensive assessment of integrated rice-crayfish farming system as a new paradigm to air-water-food nexus sustainability. Qiaoyu Sun,Benyamin Khoshnevisan,Jianqiang Zhu,Weiwei Wang,Yilin Liu,Junting Pan,Xianpeng Fan,Dingyue Zhang,Maoqian Wu,Hongbin Liu. 2022

[5]Distribution, uptake, and daily exposure of per- and polyfluoroalkyl substances in a paddy field: A growth cycle study. Bowen Li,Hongping Wang,Peiwen Yu,Pan Zou,Dongfei Tan,Fen Jin. 2025

[6]Machine learning-driven method for in-situ high-frequency CH4 measurement in paddy fields based on water-soil-air factors: A case study of the Yangtze River Basin. Qinjing Zhang,Weijia Wen,Yanhua Zhuang,Liang Zhang,Limei Zhai,Sisi Li,Hongbin Liu,Yun Du. 2025

[7]Adaptation strategies of climate variability impacts on alpine grassland ecosystems in Tibetan Plateau. Gao, Qing-zhu,Li, Yue,Wan, Yun-fan,Gao, Qing-zhu,Li, Yue,Wan, Yun-fan,Xu, Hong-mei,Jiangcun, Wang-zha. 2014

[8]Cost-effectiveness analysis of water-saving irrigation technologies based on climate change response: A case study of China. Zou, Xiaoxia,Li, Yu'e,Gao, Qingzhu,Wan, Yunfan,Qin, Xiaobo,Cremades, Roger,Cremades, Roger.

[9]Multi-objective deficit drip irrigation optimization of citrus yield, fruit quality and water use efficiency using NSGA-II in seasonal arid area of Southwest China. Fei Chen,Ningbo Cui,Shouzheng Jiang,Zhihui Wang,Hongping Li,Min Lv,Yaosheng Wang,Daozhi Gong,Lu Zhao. 2023

[10]Effect of Delayed Irrigation at the Jointing Stage on Nitrogen, Silicon Nutrition and Grain Yield of Winter Wheat in the North China Plain. Hao Zheng,Jinyang Sun,Yueping Liang,Caiyun Cao,Yang Gao,Junpeng Zhang,Hongkai Dang,Chunlian Zheng. 2024

[11]Water-saving irrigation suppresses on soil-crop pathogenicity: Insight on the co-host of virulence factors and antibiotic resistance genes. Lizhi Zhao,Yuhui Li,Qifan Yang,Ruolan Li,Houyu Li,Yan Xu. 2025

[12]Investigating Sedimentation Patterns and Fluid Movement in Drip Irrigation Emitters in the Yellow River Basin. Mengyang Wang,Mengyun Xue,Hao Sun,Hui Li,Rui Li,Qibiao Han. 2025

[13]Relationships between C/N metabolism and rice growth related indicators under alternating drought and flooding stress. Zhenchang Wang,Yuexiong Wang,Rangjian Qiu,Xiangping Guo,Bingqi Xiao,Jinjing Liu,Cheng Hong,Minghao Tian,Xiaoman Qiang. 2024

[14]Visible-near infrared hyperspectral imaging for non-destructive estimation of leaf nitrogen content under water-saving irrigation in protected tomato cultivation. Hu, Caixia,Zhao, Tingting,Duan, Yingying,Zhang, Yungui,Wang, Xinxiu,Li, Jie,Zhang, Guilong. 2025

作者其他论文 更多>>