期刊文献+

茶园生态系统的一氧化氮年排放特征 被引量:3

Annual Fluxes of Nitric Oxide from a Tea Plantation Ecosystem
下载PDF
导出
摘要 采用静态暗箱-化学发光法,对亚热带典型茶园不同施肥处理(常规施尿素、施有机肥和不施肥对照)条件下的一氧化氮(NO)排放通量进行了原位周年观测。结果显示:施肥茶园的NO排放量主要集中在3—9月(春夏季)的茶树生长期,占全年排放量的58%~73%;土壤铵态氮含量是茶园在春夏季NO排放通量变化的主要环境控制因素;对照、尿素、有机肥处理的NO年排放量分别为2.85、19.42、17.04 kg N·hm-2,施肥显然大幅度增加了NO排放;与茶农常规施尿素处理相比,施有机肥处理显著降低了约12%的NO年排放量;在整个观测期内,常规施尿素和施有机肥处理的NO年直接排放系数分别为3.68%和3.15%。这些结果表明,我国亚热带茶园可能是一个不容忽视的NO强排放源,对此尚需多地点多年的长期研究进一步证实。 To quantify annual nitric oxide(NO)fluxes and to explore the underlying mechanisms and factors controlling NO fluxes from tea fields,we performed in situ measurements of NO fluxes for a full year in a subtropical tea field with different fertilization managements(i.e.,conventional farmers′ practice with urea application,alternative practice with organic fertilizer application,and no nitrogen application as a control).Static opaque chamber and chemiluminescent analysis were used.Results demonstrated that the majority of NO fluxes occurred during tea tree-growing period from March to September(i.e.,in the spring and summer seasons),accounting for approximately 58%~73%of annual cumulative NO fluxes from the fertilized tea fields.During this period,soil ammonium content was the key environmental factor regulating the temporal variations of NO fluxes.The cumulative NO fluxes were about 2.85,19.42 and 17.04 kg N·hm-2for the control,urea and organic fertilizer treatments,respectively,with fertilization significantly increasing NO fluxes.Of the fertilized treatments,applying organic fertilizer significantly reduced annual NO emissions by 12%,as compared to urea application.The direct emission factor of NO for urea and organic fertilizer amendments was estimated to be 3.68% and 3.15%,respectively,highlighting high NO emissions from tea plantations.
出处 《农业环境科学学报》 CAS CSCD 北大核心 2015年第8期1610-1617,共8页 Journal of Agro-Environment Science
基金 国家自然科学基金(41305129 41321064)
关键词 茶园 施肥 一氧化氮(NO) 排放因子 tea plantation fertilization nitric oxide emission factor
  • 相关文献

参考文献20

  • 1Tongbin Zhu,Qi Dang,Jinbo Zhang,Christoph Müller,Zucong Cai.Reductive soil disinfestation (RSD) alters gross N transformation rates and reduces NO and N 2 O emissions in degraded vegetable soils[J]. Plant and Soil . 2014 (1-2)
  • 2Akinori Yamamoto,Hiroko Akiyama,Takuji Naokawa,Yasuhiro Miyazaki,Yusuke Honda,Yukimasa Sano,Yasuhiro Nakajima,Kazuyuki Yagi.Lime-nitrogen application affects nitrification, denitrification, and N 2 O emission in an acidic tea soil[J]. Biology and Fertility of Soils . 2014 (1)
  • 3Guangxuan Yan,Xunhua Zheng,Feng Cui,Zhisheng Yao,Zaixing Zhou,Jia Deng,Yu Xu.Two-year simultaneous records of N 2 O and NO fluxes from a farmed cropland in the northern China plain with a reduced nitrogen addition rate by one-third[J]. Agriculture, Ecosystems and Environment . 2013
  • 4J.Min,W.Shi,G.Xing,D.Powlson,Z.Zhu.Nitrous oxide emissions from vegetables grown in a polytunnel treated with high rates of applied nitrogen fertilizers in Southern China[J]. Soil Use and Management . 2012 (1)
  • 5Mei, Baoling,Zheng, Xunhua,Xie, Baohua,Dong, Haibo,Yao, Zhisheng,Liu, Chunyan,Zhou, Zaixing,Wang, Rui,Deng, Jia,Zhu, Jianguo.Characteristics of multiple-year nitrous oxide emissions from conventional vegetable fields in southeastern China[J]. Journal of Geophysical Research. Atmospheres . 2011 (12)
  • 6P. Laville,S. Lehuger,B. Loubet,F. Chaumartin,P. Cellier.Effect of management, climate and soil conditions on N 2 O and NO emissions from an arable crop rotation using high temporal resolution measurements[J]. Agricultural and Forest Meteorology . 2010 (2)
  • 7Yao, Zhisheng,Wu, Xing,Wolf, Benjamin,Dannenmann, Michael,Butterbach-Bahl, Klaus,Brüggemann, Nicolas,Chen, Weiwei,Zheng, Xunhua.Soil-atmosphere exchange potential of NO and N2O in different land use types of Inner Mongolia as affected by soil temperature, soil moisture, freeze-thaw, and drying-wetting events[J]. Journal of Geophysical Research. Atmospheres . 2010 (17)
  • 8Baoling Mei,Xunhua Zheng,Baohua Xie,Haibo Dong,Zaixing Zhou,Rui Wang,Jia Deng,Feng Cui,Huajun Tong,Jianguo Zhu.Nitric oxide emissions from conventional vegetable fields in southeastern China[J]. Atmospheric Environment . 2009 (17)
  • 9Zhisheng Yao,Xunhua Zheng,Baohua Xie,Baoling Mei,Rui Wang,Klaus Butterbach-Bahl,Jianguo Zhu,Rui Yin.Tillage and crop residue management significantly affects N-trace gas emissions during the non-rice season of a subtropical rice-wheat rotation[J]. Soil Biology and Biochemistry . 2009 (10)
  • 10Ana Meijide,Lourdes García-Torres,Augusto Arce,Antonio Vallejo.Nitrogen oxide emissions affected by organic fertilization in a non-irrigated Mediterranean barley field[J]. Agriculture, Ecosystems and Environment . 2009 (1)

二级参考文献10

  • 1.
  • 2Co-operative Programme for Monitoring and Evaluation of the Long-Range Transmission of Air Pollutants in Europe (EMEP).Detailed reports per country. Available only for acidifying and eutrophying pollutants[]..
  • 3IPCC Third Assessment Report: Climate Change 2001. http://www.emep.int/areas .
  • 4Zheng, X.,Fu, C.,Xu, X,,Yan, X.,Huang, Y.,Chen, G.,Han, S.,Hu, F.The Asian nitrogen case-study[].Ambio.2002
  • 5State and Territorial Air Pollution Program Administrators and Association of Local Air Pollution Officials.Reducing Greenhouse Gases & Air Pollution, a Menu of Harmonized Options[]..1999
  • 6.
  • 7.
  • 8Energy Information Administration.International Energy Outlook 2001[]..2000
  • 9Pierce,M.A.Urban Technological Systems Before Edison: Steam Heat and Power in Philadelphia[].(http://wwwenergyrochesteredu).1993
  • 10Richard Perez, R.,Seals, R.Geographical Distribution of PV Effective Capacity in the U.S. Northeast Sun: The Magazine of the Northeast Sustainable Energy Association[]..1997

共引文献9

同被引文献28

引证文献3

二级引证文献16

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