Methane emissions responding to Azolla inoculation combined with midseason aeration and N fertilization in a double-rice cropping system

被引:0
|
作者
Ya-Dong Yang
He-Shui Xu
Deng-Yun Li
Jing-Na Liu
Jiang-Wen Nie
Zhao-Hai Zeng
机构
[1] China Agricultural University/Key Laboratory of Farming System,College of Agronomy and Biotechnology
[2] Ministry of Agriculture of China,undefined
[3] Shanghai Academy of Agricultural Sciences,undefined
关键词
CH; emission; Rice paddy; Midseason aeration; N fertilization;
D O I
暂无
中图分类号
学科分类号
摘要
Methane (CH4) is an important greenhouse gas (GHG), and paddy fields are major sources of CH4 emissions. This pot experiment was conducted to investigate the integrated effects of Azolla inoculation combined with water management and N fertilization on CH4 emissions in a double-rice cropping system of Southern China. Results indicated that midseason aeration reduced total CH4 emissions by 46.9%, 38.6%, and 42.4%, followed by N fertilization with 32.5%, 17.0%, and 29.5% and Azolla inoculation with 32.5%, 17.0%, and 29.5%, on average, during the early, late, and annual rice growing seasons, respectively. The CH4 flux peaks and total CH4 emissions observed in the late rice growing season were significantly higher than those in the early rice growing season. Additionally, CH4 fluxes correlated negatively to soil redox potential (Eh) and dissolved oxygen (DO) concentration. Azolla inoculation and N fertilization greatly increased the rice grain yields, whereas midseason aeration had distinct effects on grain yields in both rice seasons. The highest annual rice grain yields of approximately 110 g pot−1 were obtained in the Azolla inoculation and N fertilization treatments. In terms of yield-scaled CH4 emission, Azolla inoculation combined with midseason aeration and N fertilization generated the lowest yield-scaled CH4 emissions both in the early and in the late rice growing seasons, as well as during the annual rice cycle. In contrast, the highest yield-scaled CH4 emission was obtained in the treatment employed continuous flooding, without Azolla and no N application. Our results demonstrated that Azolla inoculation, midseason aeration, and N fertilization practices mitigated total CH4 emissions by 18.5–42.4% during the annual rice cycle. We recommend that the combination of Azolla inoculation, midseason aeration, and appropriate N fertilization can achieve lower CH4 emissions and yield-scaled CH4 emissions in the double-rice growing system.
引用
收藏
页码:20352 / 20363
页数:11
相关论文
共 24 条
  • [1] Methane emissions responding to Azolla inoculation combined with midseason aeration and N fertilization in a double-rice cropping system
    Yang, Ya-Dong
    Xu, He-Shui
    Li, Deng-Yun
    Liu, Jing-Na
    Nie, Jiang-Wen
    Zeng, Zhao-Hai
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2019, 26 (20) : 20352 - 20363
  • [2] Effect of warming on rice yield and methane emissions in a Chinese tropical double-rice cropping system
    Zhang, Nan
    Qian, Haoyu
    Li, Huixin
    Tang, Junqi
    Yang, Taotao
    Liu, Zhuoshu
    Liu, Yunlong
    Zhang, Bin
    Ding, Yanfeng
    Jiang, Yu
    [J]. AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2023, 348
  • [3] Methane emissions from double-rice cropping system under conventional and no tillage in southeast China
    Li, Daming
    Liu, Manqiang
    Cheng, Yanhong
    Wang, Dong
    Qin, Jiangtao
    Jiao, Jiaguo
    Li, Huixin
    Hu, Feng
    [J]. SOIL & TILLAGE RESEARCH, 2011, 113 (02): : 77 - 81
  • [4] Simulation of Methane Emissions from Double-Rice Cropping System in Southern China during the Past 50 Years by DNDC Model
    Wang, Xiangyi
    Tian, Zhan
    Fan, Dongli
    Hou, Meifang
    Niu, Yilong
    Xu, Hanqing
    Hu, Biao
    Shi, Runhe
    Chen, Maosi
    [J]. REMOTE SENSING AND MODELING OF ECOSYSTEMS FOR SUSTAINABILITY XV, 2018, 10767
  • [5] Modelling methane emissions and grain yields for a double-rice system in Southern China with DAYCENT and DNDC models
    Guo, Yang
    Zhang, Guangbin
    Abdalla, Mohamed
    Kuhnert, Matthias
    Bao, Haijun
    Xu, Hua
    Ma, Jing
    Begum, Khadiza
    Smith, Pete
    [J]. GEODERMA, 2023, 431
  • [6] Low greenhouse gases emissions associated with high nitrogen use efficiency under optimized fertilization regimes in double-rice cropping systems
    Yu, Kai
    Fang, Xiantao
    Zhang, Yihe
    Miao, Yingcheng
    Liu, Shuwei
    Zou, Jianwen
    [J]. APPLIED SOIL ECOLOGY, 2021, 160
  • [7] Long-Term P Fertilizer Application Reduced Methane Emissions from Paddies in a Double-Rice System
    Zhu, Xiangcheng
    Li, Jin
    Liang, Xihuan
    Chen, Yunfeng
    Chen, Xianmao
    Ji, Jianhua
    Xia, Wenjian
    Lan, Xianjin
    Peng, Chunrui
    Chen, Jin
    [J]. AGRONOMY-BASEL, 2022, 12 (09):
  • [8] Azolla planting reduces methane emission and nitrogen fertilizer application in double rice cropping system in southern China
    Xu, Heshui
    Zhu, Bo
    Liu, Jingna
    Li, Dengyun
    Yang, Yadong
    Zhang, Kai
    Jiang, Ying
    Hu, Yuegao
    Zeng, Zhaohai
    [J]. AGRONOMY FOR SUSTAINABLE DEVELOPMENT, 2017, 37 (04)
  • [9] Azolla planting reduces methane emission and nitrogen fertilizer application in double rice cropping system in southern China
    Heshui Xu
    Bo Zhu
    Jingna Liu
    Dengyun Li
    Yadong Yang
    Kai Zhang
    Ying Jiang
    Yuegao Hu
    Zhaohai Zeng
    [J]. Agronomy for Sustainable Development, 2017, 37
  • [10] Timing of midseason aeration to reduce CH4 and N2O emissions from double rice cultivation in China
    Ma, Jing
    Ji, Yang
    Zhang, Guangbin
    Xu, Hua
    Yagi, Kazuyuki
    [J]. SOIL SCIENCE AND PLANT NUTRITION, 2013, 59 (01) : 35 - 45