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林业科学 ›› 2005, Vol. 41 ›› Issue (1): 10-13.doi: 10.11707/j.1001-7488.20050103

• 论文及研究报告 • 上一篇    下一篇

不同林分下土壤活性有机碳库研究

姜培坤   

  1. 浙江林学院生态环境研究所,临安311300
  • 收稿日期:2002-11-21 修回日期:1900-01-01 出版日期:2005-01-25 发布日期:2005-01-25

Soil Active Carbon Pool under Different Types of Vegetation

Jiang Peikun   

  1. Ecology and Environment Institute, Zhejiang Forestry College Lin'an311300
  • Received:2002-11-21 Revised:1900-01-01 Online:2005-01-25 Published:2005-01-25

摘要:

采样分析常绿阔叶林、马尾松林和人工杉木林不同层次土壤的活性有机碳含量。结果表明:常绿阔叶林土壤微生物量碳和易氧化态碳含量高于马尾松与杉木林土壤,杉木林土壤水溶性碳含量相对较低。从不同层次看,土壤微生物量碳、易氧化态碳含量均随着土层深度加深而递减。水溶性碳、微生物量碳和易氧化态碳占总有机碳的比率分别波动在0.31%~1.18%、0.90%~2.51%和7.03%~29.52%之间,其中,土壤水溶性碳占总有机碳比率为马尾松林>常绿阔叶林>人工杉木林,易氧化态碳占总有机碳比率常绿阔叶林明显高于马尾松林和杉木林。不同土壤水溶性有机碳占总有机碳比率随剖面从上到下均表明出上升趋势,而易氧化态碳占总有机碳比率随剖面加深有规律地下降。土壤有机碳总量与各活性碳之间以及各类活性碳之间相关性均达到极显著水平。

关键词: 常绿阔叶林, 马尾松林, 人工杉木林, 水溶性有机碳, 微生物量碳, 易氧化碳

Abstract:

Soils under three types of vegetation were selected for this study, and samples were analyzed for different fractions of carbon and soil nutrients. It can be found that broad-leaved evergreen forest contained more microbial biomass (MBC) and the ease of oxidation of carbon (EOC) compared with Chinese Fir and Masson Pine stands. Soil water-soluble organic carbon (WSOC) were measured relative lower abundance for Chinese Fir compared with broad-leaved evergreen and Masson Pine forest. The profile distribution of MBC and EOC appeared a decline trend with depth. The percentages that total organic carbon (TOC)presented as WSOC, MBC and EOC were ranged in 0.31%~1.18%, 0.9%~2.51% and 7.03%~29.52% respectively. Soil under Masson Pine forest was the richest abundance in WSOC%, followed by broad-leaved evergreen forest and Chinese Fir was the poorest. EOC% of soil under broad-leaved evergreen was much more than those under the other two forests. Distribution of WSOC of soil from surface to the deep as percentage of TOC was increased greatly, but as for EOC%, the reserve appeared to be true. Soil active carbon were not only significantly correlated to TOC but also interrelated themselves.

Key words: broad-leaved evergreen forest, Masson Pine, Chinese Fir, water-soluble organic carbon(WSOC), microbial biomass(MBC), ease of oxidation of carbon (EOC)