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Chinese Journal of Applied Ecology ›› 2002, Vol. ›› Issue (10): 1249-1252.

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DIAO Yiwei1,2, ZHENG Xunhua1, WANG Yuesi1, XU Zhongjun1, HAN Shenghui1, ZHU Jianguo3   

  1. 1. Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029;
    2. Nanjing Institute of Meteorology, Nanjing 210044;
    3. Nanjing Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008
  • Received:2002-06-12 Revised:2002-08-18

Abstract: Amethod was specially designed and applied for measuring CO2 concentration of soil air over the non-waterlogged period of a rice-wheat rotation on an available area of about 1.6m2 in a FACE (free-air CO2 enrichment) study. Based on measuring the CO2 concentration over the soil profile of 0~30 cm in depth using this method, the CO2 profile in the soils of wheat fields under elevated and ambient CO2 and the bare land under ambient CO2 was investigated and some preliminary results were obtained. With in 0~30 cm in soil depth,CO2 in the pores of the upper soil layers vertically diffused upwards much more quickly than that in the lower soil layers. During the period with active wheat growth, elevated atmospheric CO2 by 200±40μmol·mol-1 significantly increased the CO2 concentration in soil air with in 0~30 cm in depth by 14%±5% (t-test, P<0.001).

Key words: driving factor, MOD17A3, NPP, vegetation, Shaanxi Pro-vince., spatio-temporal change

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