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    胡海清, 罗斯生, 罗碧珍, 魏书精, 王振师, 吴泽鹏. 林火干扰对广东省杉木林土壤有机碳及其组分的影响[J]. 北京林业大学学报, 2019, 41(12): 108-118. DOI: 10.12171/j.1000-1522.20190179
    引用本文: 胡海清, 罗斯生, 罗碧珍, 魏书精, 王振师, 吴泽鹏. 林火干扰对广东省杉木林土壤有机碳及其组分的影响[J]. 北京林业大学学报, 2019, 41(12): 108-118. DOI: 10.12171/j.1000-1522.20190179
    Hu Haiqing, Luo Sisheng, Luo Bizhen, Wei Shujing, Wang Zhenshi, Wu Zepeng. Effects of forest fire disturbance on soil organic carbon and its components of Cunninghamia lanceolata forest in Guangdong Province, southern China[J]. Journal of Beijing Forestry University, 2019, 41(12): 108-118. DOI: 10.12171/j.1000-1522.20190179
    Citation: Hu Haiqing, Luo Sisheng, Luo Bizhen, Wei Shujing, Wang Zhenshi, Wu Zepeng. Effects of forest fire disturbance on soil organic carbon and its components of Cunninghamia lanceolata forest in Guangdong Province, southern China[J]. Journal of Beijing Forestry University, 2019, 41(12): 108-118. DOI: 10.12171/j.1000-1522.20190179

    林火干扰对广东省杉木林土壤有机碳及其组分的影响

    Effects of forest fire disturbance on soil organic carbon and its components of Cunninghamia lanceolata forest in Guangdong Province, southern China

    • 摘要:
      目的定量研究林火干扰对森林生态系统土壤有机碳及其组分的影响,揭示林火干扰对森林生态系统土壤有机碳及组分的变化规律,以期为森林土壤碳循环和碳过程研究提供科学参考。
      方法以广东省杉木林为研究对象,采用相邻样地比较法,以野外调查采样与室内实验分析为主要手段,在森林生态系统水平上,定量测定不同林火干扰强度对土壤有机碳密度、土壤有机碳组分含量和细根生物量的影响,探讨林火干扰对土壤有机碳密度、土壤有机碳组分含量和细根生物量的影响机制。
      结果林火干扰对杉木林的土壤有机碳密度、土壤有机碳组分含量和细根生物量均有影响,土壤有机碳密度与土壤有机碳组分含量变化趋势表现为对照 > 轻度林火干扰 > 中度林火干扰 > 重度林火干扰。轻度林火干扰对土壤有机碳密度的影响差异不显著(P > 0.05),而中度和重度林火干扰则显著降低了土壤有机碳密度(P < 0.05)。杉木林土壤细根生物量均低于对照样地,变化趋势为重度林火干扰 > 中度林火干扰 > 轻度林火干扰,轻度林火干扰只显著降低了土壤表层细根生物量(P < 0.05),而中度和重度林火干扰则显著降低了土壤表层和浅层细根生物量(P < 0.05)。
      结论林火干扰减少了土壤有机碳密度,减少幅度随土壤剖面深度增加而逐渐变小。不同林火干扰强度后,土壤有机碳组分含量总体随林火干扰强度增加沿土壤剖面递减的幅度呈下降趋势。通过分析林火干扰后土壤碳密度的分布格局及影响机制,可为林火干扰后生态系统碳汇管理以及定量评价林火干扰对森林生态系统碳库的影响提供参考依据。

       

      Abstract:
      ObjectiveBy quantitative study of the effects of forest fire disturbance on soil organic carbon and its components in forest ecosystems, this paper aims to reveal the changing law of forest fire disturbance on soil organic carbon and components of forest ecosystem, with a view to providing scientific reference for the study of carbon cycle and carbon process of forest soil.
      MethodTaking the subtropical fir forest of Guangdong Province as the research object, the effects of different forest fire disturbance intensity on soil organic carbon density, organic carbon component content and fine root biomass were measured quantitatively on the level of forest ecosystem by means of adjacent sample land comparison method and field investigation sampling and laboratory test analysis, to investigate the influencing mechanism of forest fire disturbance on soil organic carbon density, soil organic carbon component content and fine root biomass.
      ResultForest fire disturbance had an effect on soil organic carbon density, soil organic carbon component content and fine root biomass in Chinese fir forest, and the changing trend of soil organic carbon density and soil organic carbon component content was the control > mild forest fire disturbance > moderate forest fire disturbance > severe forest fire disturbance. There was no significant difference in the effect of mild forest fire disturbance on soil organic carbon density (P > 0.05), while moderate and severe forest fire disturbance significantly reduced soil organic carbon density (P < 0.05). The biomass of soil in Chinese fir forest was lower than that in the same place, the trend of change was severe forest fire disturbance > moderate forest fire disturbance, mild forest fire disturbance only significantly reduced the fine root biomass (P < 0.05) of soil surface, while moderate and severe forest fire disturbance significantly reduced soil surface and shallow fine root biomass (P < 0.05). The soil fine root biomass of Chinese fir forest was lower than that in different forest fire interference intensity, the changing trend was severe forest fire disturbance > moderate forest fire disturbance > mild forest fire disturbance, and mild forest fire disturbance only significantly reduced the fine root biomass (P < 0.05) of soil surface. Moderate and severe forest fire disturbance significantly reduced soil surface and shallow fine root biomass (P < 0.05).
      ConclusionThe results show that forest fire disturbance reduces soil organic carbon density and decreases gradually with the increase of soil profile depth. The content of soil labile organic carbon is decreasing with the increase of forest fire disturbance intensity and the decrease of soil profile after different forest fire interference intensities. By analyzing the distribution pattern and influencing mechanism of soil carbon density after forest fire disturbance, this paper provides a reference for the management of ecosystem carbon sink after forest fire disturbance and the quantitative evaluation of the influence of forest fire disturbance on the carbon bank of forest ecosystem.

       

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