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Chinese Journal of Ecology ›› 2021, Vol. 40 ›› Issue (3): 644-653.doi: 10.13292/j.1000-4890.202103.003

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Effects of freeze-thaw process on the emission of two greenhouse gases from different forest soils in Changbai Mountain.

XIN Gui-min1, ZHAO Qing-zhu1, YIN Hang2, LI Long1, HE Shu-min1, ZHOU Pei-hua1, FU Min-jie1*   

  1. (1College of Agriculture, Yanbian University, Yanji 133002, Jilin, China; 2Changbai Mountain Scientific Research Institute, Antu 133613, Jilin, China).
  • Online:2021-03-10 Published:2021-03-12

Abstract: We examined the emission of CO2 and N2O from soils of five forest types (hardwood broad-leaved forest, Korean pine broad-leaved forest, secondary birch forest, Changbai pine forest and Mongolian oak forest) in the process of freeze-thaw by in situ continuous sampling. The results showed that soils from all the forest types were CO2 and N2O source during freeze-thaw season. The average flux of CO2 and N2O for secondary birch forest and Korean pine broad-leaved forest soils were significantly higher than that of other forest types. Except for the hardwood broad-leaved forest, there was a significant negative correlation between CO2 flux and soil water content in the forest soils. The water sensitivity of soil CO2 emissions varied greatly among different forest types. There was a significant positive correlation between soil N2O flux and soil water content in all forest types except the hardwood broad-leaved forest. The soil CO2 and N2O emission fluxes in five forest types were related to the temperature of surface soils by quadratic function.

Key words: freeze-thaw, forest soil, CO2, N2O.