Exploring management strategies to improve yields and reduce reactive nitrogen emissions in a summer maize-winter wheat cropping system under long-term climate variability
文献类型: 外文期刊
第一作者: Huang, Shaohui
作者: Huang, Shaohui;Yang, Junfang;Xing, Suli;Yang, Wenfang;Yang, Yunma;Jia, Liangliang;Huang, Shaohui;He, Ping
作者机构:
关键词: DNDC model; reactive nitrogen emissions; sensitivity analysis; winter wheat-summer maize rotation
期刊名称:FOOD AND ENERGY SECURITY ( 影响因子:5.0; 五年影响因子:5.9 )
ISSN: 2048-3694
年卷期: 2024 年 13 卷 3 期
页码:
收录情况: SCI
摘要: Achieving high stable crop yields and minimal environmental damage is crucial to enhance the sustainability of agriculture in China. Process-based models are indispensable tools to develop agronomy management practices to achieve sustainable agriculture by simulating crop production and emissions of reactive nitrogen (N), particularly in complex climate scenarios. In this study, a long-term field experiment with an intensive summer maize-winter wheat rotation system in north-central China was simulated using the DeNitrification-DeComposition (DNDC) model. The DNDC model validation and calibration was done by using two-year monitoring data of crop yields and nitrous oxide emission fluxes and ammonia volatilization. Moreover, the optimal management practices to promote crop production and reduce the reactive N loss under 22 years of climate variability were explored using the calibrated DNDC model in this region. The results showed that the DNDC model effectively simulated wheat and maize yields, N uptake, ammonia volatilization, and nitrous oxide emissions. Sensitivity analyses demonstrated that the agronomic management practices (N rates and ratio of base to topdressing, planting time, and tillage depth) substantially affected crop yields and reactive N losses under long-term climate variability. Compared with current farming practices, optimal Nutrient Expert (NE) management achieved an increase in high yields and environmental pollution radiation by altering the rate of N application and ratio of base to topdressing. Moreover, the optimal management strategies developed by the DNDC model, such as adjusting the planting date and tillage depth, further increased the average grain yield by 2.9% and reduced the average reactive N losses by 10.5% compared with the NE management implemented in the annual rotation cropping with a 22-year simulation. This study suggests that the modeling method facilitates the development of most effective agronomic management practices to promote crop production and alleviate the negative impact on environment. Agronomic management practices were developed by using the DNDC model under long-term climate variability.image
分类号:
- 相关文献
作者其他论文 更多>>
-
Genomic diversity, population structure, and genome-wide association reveal genetic differentiation and trait improvements in mango
作者:Ma, Xiaowei;Wu, Hongxia;Wang, Songbiao;Zhang, Yuehua;Su, Muqing;Zheng, Bin;Xu, Wentian;Ma, Xiaowei;Wu, Hongxia;Wang, Songbiao;Zhang, Yuehua;Su, Muqing;Zheng, Bin;Xu, Wentian;Ma, Xiaowei;Wu, Hongxia;Wang, Songbiao;Zhang, Yuehua;Su, Muqing;Zheng, Bin;Xu, Wentian;Liu, Bin;Pan, Hongbing;Du, Bang;Wang, Jun;He, Ping;Chen, Qianfu;An, Hong;Luo, Xiang
关键词:
-
Optimized Nitrogen Fertilization Promoted Soil Organic Carbon Accumulation by Increasing Microbial Necromass Carbon in Potato Continuous Cropping Field
作者:Lv, Huidan;He, Ping;Zhao, Shicheng;Lv, Huidan;He, Ping;Zhao, Shicheng;Lv, Huidan;He, Ping;Zhao, Shicheng
关键词:nutrient expert; soil organic carbon fraction; microbial residue carbon; soil enzyme activity; optimizing fertilization
-
Response of soil microbial properties in the life cycle of potatoes to organic substitution regimes in North China
作者:Wang, Xiya;Zhao, Shicheng;Xu, Xinpeng;Liu, Mengjiao;He, Ping;Zhou, Wei;Wang, Xiya;Zhao, Shicheng;Xu, Xinpeng;Liu, Mengjiao;He, Ping;Zhou, Wei;Jiang, Rong;Zhang, Jun;Duan, Yu;He, Ping;Zhou, Wei
关键词:Organic substitution regime; Potato growth period; Soil chemistry properties; Soil microbial diversity; Soil microbial network
-
Benefits and trade-offs of replacing inorganic fertilizer by organic substrate in crop production: A global meta-analysis
作者:Wang, Xiya;Liu, Mengjiao;Cui, Jiwen;Fang, Kangrui;Zhao, Shicheng;He, Ping;Zhou, Wei;Wang, Xiya;Liu, Mengjiao;Cui, Jiwen;Fang, Kangrui;Zhao, Shicheng;He, Ping;Zhou, Wei;Ciampitti, Ignacio A.;Zhou, Wei
关键词:Organic substitution regimes; Crop productivity; Soil carbon and nitrogen losses; Biofertility; Trade-offs
-
Application potential of modified waste-lignin as microbial immobilization carriers for improve soil fertility
作者:Yang, Junfang;Xing, Suli;Yang, Wenfang;Zhang, Aiping;Wang, Weishuai
关键词:Wasted lignin; Chemically modified; Immobilized; Bio-composite; Promote growth
-
Modelling adaptation measures to improve maize production and reduce soil N2O emissions under climate change in Northeast China
作者:Fan, Daijia;Song, Daping;Jiang, Rong;Shi, Yaoyao;Zou, Guoyuan;He, Wentian;He, Ping;Pan, Zhaolong
关键词:Maize yield; N 2 O emissions; DNDC model; Climate change; Adaptation strategies
-
Organic substitution regime with optimized irrigation improves potato water and nitrogen use efficiency by regulating soil chemical properties rather than microflora structure
作者:Wang, Xiya;Yang, Binggeng;Zhao, Shicheng;Liu, Mengjiao;Xu, Xinpeng;He, Ping;Zhou, Wei;Wang, Xiya;Zhao, Shicheng;Liu, Mengjiao;Xu, Xinpeng;He, Ping;Zhou, Wei;Jiang, Lingling;Jiang, Rong;Zhang, Jun;Duan, Yu
关键词:Water-nitrogen coupling; Water use efficiency; Nitrogen use efficiency; Soil chemical properties; Soil microflora structure