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亚热带红壤侵蚀区马尾松不同套种模式生态系统碳平衡
引用本文:程分生,尤龙辉,叶功富,游惠明,聂森,林文泉. 亚热带红壤侵蚀区马尾松不同套种模式生态系统碳平衡[J]. 应用生态学报, 2021, 32(4): 1163-1174. DOI: 10.13287/j.1001-9332.202104.001
作者姓名:程分生  尤龙辉  叶功富  游惠明  聂森  林文泉
作者单位:1.福建省林业科学研究院, 福州 350012;2.福建农林大学林学院, 福州 350002;3.福州市林业局自然保护地规划发展中心, 福州 350007
基金项目:福建省林业科研项目(闽林科便函〔2019〕16号)、国家科技支撑计划项目(2014BAD15B00)和福建省公益类科研院所专项(2017R1011-2)资助
摘    要:以福建省长汀县红壤侵蚀区马尾松低效林套种杨梅、无患子、油茶及黄栀子的改造模式林分为研究对象,对林分各组分生物量年净生长量、含碳率及土壤异养呼吸进行定位观测,分析套种模式对低效马尾松林分生态系统碳储量格局及碳平衡的影响.结果 表明:杨梅、无患子、油茶、黄栀子和马尾松不同器官含碳率的变化范围分别为41.1%~ 50.1%、...

关 键 词:马尾松  套种模式  碳储量  碳平衡
收稿时间:2020-04-20

Carbon balance in an interplanting Pinus massoniana stand in subtropical eroded red soil region,China.
CHENG Fen-sheng,YOU Long-hui,YE Gong-fu,YOU Hui-ming,NIE Sen,LIN Wen-quan. Carbon balance in an interplanting Pinus massoniana stand in subtropical eroded red soil region,China.[J]. The journal of applied ecology, 2021, 32(4): 1163-1174. DOI: 10.13287/j.1001-9332.202104.001
Authors:CHENG Fen-sheng  YOU Long-hui  YE Gong-fu  YOU Hui-ming  NIE Sen  LIN Wen-quan
Affiliation:1.Fujian Academy of Forestry Sciences, Fuzhou 350012, China;2.College of Forestry, Fujian Agriculture and Forestry University, Fuzhou 350002, China;3.Planning and Development Center of Nature Reserves, Fuzhou Forestry Bureau, Fuzhou 350007, China
Abstract:We measured the annual net biomass growth, carbon content of each component and soil heterotrophic respiration in four low-efficiency interplanting patterns, i.e., Pinus massoniana stands interplanting Myrica rubra, Sapindus mukurossi, Camellia oleifera and Gardenia jasminoides in Changting County, Fujian Province, with the aim to analyze the effects of interplanting patterns on carbon storage pattern and carbon balance of low-efficiency P. massoniana stand. The ranges of carbon content in different organs of M. rubra, S. mukurossi, C. oleifera, G. jasminoides and P. massoniana were 41.1%-50.1%, 42.2%-50.6%, 45.1%-48.9%, 44.7%-49.6% and 46.1%-51.9%, respectively. Carbon content of the same organ significantly differed among tree species. The pattern of P. massoniana interplanting M. rubra and S. mukurossi had the highest carbon stock and annual net carbon increase reserves, with values of 67.62-68.42 t·hm-2 and 9.21-9.45 t·hm-2·a-1, respectively. Followed by the lower pattern of C. oleifera, G. jasminoides, with values of 31.96-36.24 t·hm-2 and 4.09-4.16 t·hm-2·a-1, respectively. The P. massoniana pure forest was the lowest, with values of 17.01 t·hm-2 and 2.00 t·hm-2·a-1, respectively. Annual flux of soil heterotrophic respiration was following the order of P. massoniana interplanting M. rubra pattern (7.41 t·hm-2·a-1) > P. massoniana interplanting C. oleifera pattern (5.89 t·hm-2·a-1)> P. massoniana interplanting S. mukurossi pattern (5.86 t·hm-2·a-1) > P. massoniana interplanting G. jasminoides pattern (4.95 t·hm-2·a-1) > P. massoniana pure forest (2.45 t·hm-2·a-1). Annual net ecosystem carbon balance of P. massoniana interplanting M. rubra and S. mukurossi patterns were 2.04 and 3.27 t C·hm-2·a-1, showing a “carbon sink” pattern. The net carbon balance in the patterns of P. massoniana interplanting C. oleifera and G. jasminoides along with P. massoniana pure forest were -1.80, -0.80 and -0.45 t C·hm-2·a-1, which expressed a “carbon source” pattern. In the short-term, interplanting with M. rubra or S. mukurossi could improve the carbon income of the low-efficiency P. massoniana stand ecosystem.
Keywords:Pinus massoniana  interplanting pattern  carbon stock  carbon balance  
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