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《Journal of Agro-Environment Science》 2007-03
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Effect of Elevated Atmospheric pCO_2 on Soil Respiration During Wheat Bloom-Growth Period

KOU Tai-ji1,2,ZHU Jian-guo1,XIE Zu-bin1,LIU Gang1,ZENG Qing1,LI Xiao-ping1,T.Hasegawa3(1.State Key Laboratory of Soils and Sustainable Agriculture,Insititue of Soil Science,Chinese Academy of Sciences,Nanjing 210008,China;2.Graduate School,the Chinese Academy of Sciences,Beijing 100049,China;3.National Institute for Agro-environmental Sciences,Tsukuba,Japan 305-8604)  
Soil respiration is one of the important parts in the global carbon cycle.It plays a pivotal role in releasing C from soil C pool to the atmosphere.With FACE(Free Air Carbon Dioxide Enrichment) system,the effects of elevation of atmospheric CO2 concentration and different application rates of nitrogen fertilizer on soil respiration were evaluated using IRGA(LI6400) in situ,during the wheat growth period in rice-wheat rotation system at Jiangdu of Jiangsu province,China.The results showed that elevated CO2 concentrations enhanced soil respiration rates and cumulative CO2 emissions in the entire study period,with the increasing range markedly promoted by the increasing of nitrogen fertilizer applied,and the soil respiration rates reached the peak at booting-heading stage of winter wheat.A significant exponential-correlation between the soil respiration rate and the soil temperature was observed.Although Q10 values of FACE increased from 2.98 to 3.26 with the increasing of nitrogen fertilizer application from 112.5 kg·hm-2 to 225 kg·hm-2,they were 6.3% and 18.3% smaller than those in the ambient treatment(control),respectively.The results indicated that the elevated pCO2 depressed the sensitivity of soil respiration to the increment of soil temperature.The increase of soil respiration under conditions of elevated atmospheric pCO2 suggests that,C exchange between the atmosphere and soil would increase in arable ecosystems under future higher CO2 scenarios.
【Fund】: 973项目-中国陆地生态系统碳循环及其驱动机制研究(CCDMCTE-2002CB412502);; 中国科学院知识创新重要方向项目(KZCX3-SW-440);; 国家自然科学基金重点基金项目(40231003、40110817、40271061)
【CateGory Index】: S512.1
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