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林火干扰对土壤性质及温室气体通量的影响

任乐1,马秀枝2**,李长生3   

  1. 1内蒙古农业大学生态环境学院, 呼和浩特 010019;2内蒙古农业大学林学院, 呼和浩特 010019;3内蒙古气象局气象科学研究所, 呼和浩特 010051)
  • 出版日期:2014-02-10 发布日期:2014-02-10

Effects of forest fire on soil property and greenhouse gas flux.

REN Le1, MA Xiu-zhi2**, LI Chang-sheng3   

  1. (1College of Ecology and Environmental Science, Inner Mongolia Agricultural University, Huhhot 010019, China; 2 College of Forestry, Inner Mongolia Agricultural University, Huhhot 010019, China; 3Inner Mongolia Meteorological Administration, Huhhot 010051, China)
  • Online:2014-02-10 Published:2014-02-10

摘要:

林火干扰是森林生态系统重要的干扰因子。林火的发生烧毁大量的森林资源,释放温室气体到大气当中,同时林火对土壤物理、化学性质以及土壤微生物都会产生一定的影响,进而影响到地气主要温室气体的释放。本文综述了不同强度的森林火灾对土壤物理、化学性质以及土壤微生物的影响;森林火灾发生后的不同时间序列上地-气主要温室气体CO2、CH4、N2O通量的变异;尤其是在全球气候变暖背景下,冻土区森林火灾发生后,随冻土的融化,温室气体排放;林火发生时高温缺氧环境下往往会形成燃烧程度不同的木炭;本文还综述了火烧迹地木炭的不同管理方式如火场清理或就地掩埋,及其对火烧迹地土壤性质以及温室气体通量的影响。最后,提出今后应该注意的几个问题,并指出未来可能的研究拓展方向。
 

关键词: 东北春玉米, 光合参数, 茎流速率, 干旱胁迫, 根叶水势

Abstract: Fire is one of the most important disturbance factors in forest ecosystems. Forest fires destroy forest resources and cause greenhouse gases emission from soil to atmosphere. At the same time, forest fires can affect soil physical, chemical and microbial properties, and consequently the fluxes of main greenhouse gases between soil and atmosphere. In this paper, we briefly reviewed the effects of different fire intensities on soil physical properties (such as soil structure, soil density, field water holding capacity and soil gross porosity), soil chemical properties (such as pH, nutrient contents), and soil microbial properties (such as microbial community structure, and microbial biomass C and N). We summarized the variations of soil CO2, CH4, and N2O fluxes after different fire intensities and different time intervals, especially in the permafrost areas which are sensitive to global warming. The charcoal could be produced in forest fire under the condition of high temperature and less oxygen. We also summarized management methods for biochar in burned areas such as cleaning or burial, and their effects on soil properties and greenhouse gases fluxes. Finally, some problems unresolved in the research at present are identified, and the perspectives for further study are also proposed.

Key words: photosynthetic parameter, spring maize in Northeast China, drought stress, stem flow rate., root and leaf water potentials