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林业科学 ›› 2013, Vol. 49 ›› Issue (3): 152-158.doi: 10.11707/j.1001-7488.20130321

• 研究简报 • 上一篇    下一篇

温度和水分对长沙市丘陵马尾松林红壤N2O排放的影响 ——一个室内培养试验

苏王娟1,2, 李勇1, 石辉2, 付晓青1, 沈健林1   

  1. 1. 中国科学院亚热带农业生态研究所 亚热带农业生态过程重点实验室 长沙 410125;2. 西安建筑科技大学环境与市政工程学院 西安 710055
  • 收稿日期:2012-03-07 修回日期:2012-06-14 出版日期:2013-03-25 发布日期:2013-03-25
  • 通讯作者: 李勇

Impacts of Temperature and Moisture on Nitrous Oxide Emissions from a Pinus Massoniana Woodland Soil in a Hilly Red Soil Region in Changsha: a Laboratory Incubation Study

Su Wangjuan1,2, Li Yong1, Shi Hui2, Fu Xiaoqing1, Shen Jianlin1   

  1. 1. Key Laboratory of Agro-Ecological Processes in Subtropical Region Institute of Subtropical Agriculture, Chinese Academy of Sciences Changsha 410125;2. College of Environment and Municipal Engineering, Xi’an University of Architecture and Technology Xi’an 710055
  • Received:2012-03-07 Revised:2012-06-14 Online:2013-03-25 Published:2013-03-25

关键词: N2O排放量, 温度, 水分, 马尾松林土壤, 室内培养

Abstract: A laboratory incubation experiment was conducted to investigate nitrous oxide (N2O) emissions in the soil, which was sampled from a red soil of a Pinus massoniana forest in a typical hilly red soil region in subtropical central China, and to study impacts of the soil temperature and moisture on N2O emissions. The experiment was designed with two environmental factors (temperature and moisture) and 4-5 levels of factors. The results showed that at temperatures of 15, 25 and 30℃ and at soil moistures of WFPS=40%-60% for 15 days the N2O emissions all displayed a similar trend with a low rate at first, rapid increase during the middle period and no emission in the end. The cumulative N2O fluxes of the treatments for a period of 15 days were up to 242.85 mg N ·kg-1. Both the nitrification and denitrification processes were inhibited at 5℃, as a result, the average value of the cumulative N2O fluxes was just 0.55 mg N ·kg-1. At WFPS=20%-30%, the cumulative N2O fluxes for 15 days were very low, ranging from 1.92 to 2.72 mg N ·kg-1. The average cumulative N2O fluxes increased with the increases of soil temperature and moisture, especially when WFPS was greater than 40%. A N2O emission prediction model was established and the model parameters were determined by the nonlinear optimization estimation. The optimization results suggested that the Q10 of N2O emissions for soil nitrification and denitrification processes was 1.15 and 3.0, respectively; the optimal soil moisture for nitrification-induced N2O emissions was at WFPS=56%; and the soil WFPS exponential response coefficient for N2O emissions from soil denitrification was 8.8.

Key words: N2O emissions, temperature, moisture, Pinus massoniana woodland soil, laboratory incubation

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