期刊文献+

水稻品种对稻田CH_4和N_2O排放的影响 被引量:30

Effects of Rice Cultivars on CH_4 and N_2O Emissions from Rice Fields
下载PDF
导出
摘要 稻田被认为是温室气体甲烷(CH4)和氧化亚氮(N2O)的重要排放源,推广种植较少温室气体排放的水稻品种是控制稻田温室气体排放的有效措施之一。选取在太湖流域推广种植较多的16个品种为对象,通过研究其CH4和N2O排放情况,筛选出该区域内最适宜种植的较低温室气体排放的品种。研究结果表明,水稻的产量与CH4排放量存在显著的线性正相关关系。在常规灌溉条件下,不管是常规品种还是杂交品种,粳稻的CH4、N2O累积排放量和产量都要高于籼稻。与常规品种(粳稻或籼稻)相比,杂交品种的CH4累积排放量和产量相对较高,但N2O累积排放量相对较低。常规粳稻中的早玉香粳和秀水134、杂交粳稻中的花优14、秋优金丰和甬优9号以及杂交籼稻中的旱优113、天优华占均具有较高的产量和较低的温室气体排放强度,有较大的推广种植价值。早玉香粳、旱优8号和旱优113为节水抗旱稻,它们在水分缺少的环境下可能会表现出更大的优势。 Rice cultivation is an important source of methane(CH4) and nitrous oxide(N2O),major components of greenhouse gases(GHG).Different rice cultivars may have different GHG emission potentials.In this study,16 rice cultivars that are currently widely planted in Taihu Lake region were selected to evaluate their CH4 and N2O emissions.Results showed that a significant positive linear relationship was observed between rice grain yield and seasonal cumulative CH4 emissions.Under conventional irrigation conditions,seasonal cumulative CH4 and N2O emissions and grain yield were higher for japonica cultivars than for indica ones.In comparison with conventional rice cultivars,hybrid rice cultivars showed higher seasonal cumulative CH4 emissions and grain yield,but lower N2 O emissions.Cultivars with high yield and low GHG emissions were Zaoyuxiangjing and Xiushui 134 of conventional japonica cultivars,Huayou 14,Qiuyoujinfeng,and Yongyou 9 of hybrid japonica cultivars,and Hanyou 113 and Tianyouhuazhan of hybrid indica cultivars.Furthermore,Zaoyuxiangjing,Hanyou 8 and Hanyou 113 were drought-resistant and would perform better than others under water shortage environments.
出处 《农业环境科学学报》 CAS CSCD 北大核心 2015年第8期1595-1602,共8页 Journal of Agro-Environment Science
基金 科技部国家科技支撑项目(2013BAD11B02) 国家自然科学基金(41375157) 上海市科技兴农推广项目(沪农科推字(2013)第1-1号)
关键词 水稻品种 CH4 N2O 水稻产量 节水抗旱稻 rice cultivar CH4 N2O rice grain yield water-saving and drought-resistant rice cultivar
  • 相关文献

参考文献18

  • 1Sudip Mitra,Deepanjan Majumdar,Reiner Wassmann.Methane production and emission in surface and subsurface rice soils and their blends[J]. Agriculture, Ecosystems and Environment . 2012
  • 2Jinyang Wang,Xiaolin Zhang,Zhengqin Xiong,M. Khalil,Xu Zhao,Yingxin Xie,Guangxi Xing.Methane emissions from a rice agroecosystem in South China: Effects of water regime, straw incorporation and nitrogen fertilizer[J]. Nutrient Cycling in Agroecosystems . 2012 (1)
  • 3Youzhi Feng,Yanping Xu,Yongchang Yu,Zubin Xie,Xiangui Lin.Mechanisms of biochar decreasing methane emission from Chinese paddy soils[J]. Soil Biology and Biochemistry . 2011
  • 4Haibo Dong,Zhisheng Yao,Xunhua Zheng,Baoling Mei,Baohua Xie,Rui Wang,Jia Deng,Feng Cui,Jianguo Zhu.Effect of ammonium-based, non-sulfate fertilizers on CH 4 emissions from a paddy field with a typical Chinese water management regime[J]. Atmospheric Environment . 2010 (5)
  • 5Zhang Jian-She,Zhang Fu-Ping,Yang Jin-Hua,Wang Jin-Ping,Cai Ming-Li,Cheng-Fang Li,Cou-Gui Cao.Emissions of N 2 O and NH 3 , and nitrogen leaching from direct seeded rice under different tillage practices in central China[J]. Agriculture, Ecosystems and Environment . 2010 (1)
  • 6Jing Ma,Erdeng Ma,Hua Xu,Kazuyuki Yagi,Zucong Cai.Wheat straw management affects CH 4 and N 2 O emissions from rice fields[J]. Soil Biology and Biochemistry . 2009 (5)
  • 7K.BUTTERBACH‐BAHL,H.PAPEN,H.RENNENBERG.Impact of gas transport through rice cultivars on methane emission from rice paddy fields[J]. Plant, Cell & Environment . 2008 (9)
  • 8Z. J. Jia,Z. C. Cai,H. Xu,H. Tsuruta.Effects of rice cultivars on methane fluxes in a paddy soil[J]. Nutrient Cycling in Agroecosystems . 2002 (1)
  • 9X Yan,S Shi,L Du,G Xing.Pathways of N 2 O emission from rice paddy soil[J]. Soil Biology and Biochemistry . 2000 (3)
  • 10Heng Yao,Kazuyuki Yagi,Isamu Nouchi.Importance of physical plant properties on methane transport through several rice cultivars[J]. Plant and Soil . 2000 (1)

共引文献15

同被引文献441

引证文献30

二级引证文献143

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部