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Soil organic carbon stock and chemical composition in four plantations of indigenous tree species in subtropical China

机译:亚热带四种原生树种人工林的土壤有机碳储量和化学组成

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摘要

Subtropical China has more than 60% of the total plantation area in China and over 70% of these subtropical plantations are composed of pure coniferous species. In view of low ecosystem services and ecological instability of pure coniferous plantations, indigenous broadleaf plantations are being advocated as a prospective silvicultural management for substituting in place of large coniferous plantations in subtropical China. However, little information is known about the effects of tree species conversion on stock and stability of soil organic carbon (SOC). The four adjacent monospecific plantations were selected to examine the effects of tree species on the stock and chemical composition of SOC using elemental analysis and solid-state 13C nuclear magnetic resonance (NMR) spectroscopy. One coniferous plantation was composed of Pinus massoniana (PM), and the three broadleaf plantations were Castanopsis hystrix (CH), Michelia macclurei (MM), and Mytilaria laosensis (ML). We found that SOC stock differed significantly among the four plantations in the upper (0-10 cm) layer, but not in the underneath (10-30 cm) layer. SOC stocks in the upper (0-10 cm) layer were 11, 19, and 18% higher in the CH, MM, and ML plantations than in the PM plantation. The differences in SOC stock among the four plantations were largely attributed to fine root rather than aboveground litterfall input. However, the soils in the broadleaf plantations contained more decomposable C proportion, indicated by lower percentage of alkyl C, higher percentage of O-alkyl C and lower alkyl C/O-alkyl C ratio compared to those in the PM plantation. Our findings highlight that future strategy of tree species selection for substituting in place of large coniferous plantations in subtropical China needs to consider the potential effects of tree species on the chemical composition in addition to the quantity of SOC stock.
机译:亚热带中国占中国人工林总面积的60%以上,其中70%以上的亚热带人工林由纯针叶树种组成。鉴于纯针叶人工林的生态系统服务水平低和生态系统的不稳定性,在中国亚热带地区,人们建议将本土阔叶人工林用作替代大型针叶林的前瞻性营林管理。但是,关于树种转化对种群数量和土壤有机碳(SOC)稳定性的影响知之甚少。选择了四个相邻的单种人工林,以使用元素分析和固态13C核磁共振(NMR)光谱检查树木种类对SOC的储量和化学成分的影响。其中一种针叶人工林由马尾松(PM)组成,而三种阔叶人工林为锥栗(CH),含笑含笑(MM)和老挝Mytilaria laosensis(ML)。我们发现,上层(0-10厘米)的四个人工林之间的SOC存量差异显着,而下层(10-30厘米)的人工林则没有。 CH,MM和ML人工林上层(0-10 cm)的SOC储量比PM人工林高11、19和18%。四个人工林中SOC的差异主要归因于细根而不是地上凋落物的输入。然而,与PM人工林相比,阔叶人工林中的土壤含有较高的可分解碳比例,这表明烷基C的百分比较低,O-烷基C的百分比较高,烷基C / O-烷基C的比例较低。我们的研究结果突出表明,替代亚热带大型针叶人工林的中国树种选择的未来策略,除了SOC数量外,还需要考虑树种对化学成分的潜在影响。

著录项

  • 来源
    《Ecological research》 |2010年第6期|p.1071-1079|共9页
  • 作者单位

    Key Laboratory of Forest Ecology and Environment, China's State Forestry Administration, Institute of Forest Ecology, Environment and Protection, Chinese Academy of Forestry, No. 1 Dongxiaofu, Haidian District, Beijing 100091, China;

    rnKey Laboratory of Forest Ecology and Environment, China's State Forestry Administration, Institute of Forest Ecology, Environment and Protection, Chinese Academy of Forestry, No. 1 Dongxiaofu, Haidian District, Beijing 100091, China;

    rnSouth China Botanical Garden, Chinese Academy of Sciences, Dinghu, Zhaoqing 526070 Guangdong, China;

    rnDivision of Forestry and Natural Resources, West Virginia University, P.O. Box 6215, Morgantown, WV 26506-6125, USA;

    rnFaculty of Forest, Geo and Hydro Sciences, Institute of Soil Science, Dresden University of Technology, P.O. Box 1117, 01735 Tharandt, Germany;

    rnFaculty of Forest, Geo and Hydro Sciences, Institute of Soil Science, Dresden University of Technology, P.O. Box 1117, 01735 Tharandt, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    soil carbon stock; chemical composition; plantation; species selection; Subtropical China;

    机译:土壤碳储量;化学成分;种植园物种选择;亚热带中国;

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