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作 者:李勋[1] 张健[1,2,3] 杨万勤[1,2,3] 张艳[1] 张明锦[1] 刘华[1] 刘洋[1,2,3]
机构地区:[1]四川农业大学休学院生态林业研究所,成都611130 [2]四川农业大学生态林业工程重点实验室,成都611130 [3]四川农业大学长江上游生态安全协同创新中心,成都611130
出 处:《自然资源学报》2016年第7期1114-1126,共13页Journal of Natural Resources
基 金:国家自然科学基金项目(31370628);国家科技支撑计划项目(2011BAC09B05);四川省科技支撑计划项目(2013SZ0067;2011SZ0239);四川省科技厅应用基础项目(2012JY0047);四川省教育厅科技创新团队计划项目(11TD006)~~
摘 要:为了调整低山丘陵区低效林林分结构,探明马尾松人工林不同林窗下凋落物的全碳释放规律,论文以长江上游低山丘陵区人为采伐形成的马尾松(Pinus massoniana)人工林7种不同大小林窗(G1:100 m2,G2:225 m2,G3:400 m2,G4:625 m2,G5:900 m2,G6:1 225 m2,G7:1 600 m2)为研究对象,以林下为对照,研究了乡土阔叶树种红椿(Toona ciliata)凋落叶近1 a的全碳释放率和全碳释放速率(每30 a)。结果表明:1)相对小型(100~200 m2)和大型(1 225~1 600 m2)林窗以及林下,中型(400~625 m2)林窗更能促进凋落叶全碳的释放;2)全碳释放速率表现出先快后慢的变化趋势,在分解中后期(90~270 d),出现碳的富集现象;3)凋落物全碳的释放受林窗大小、位置、分解时间的交互作用,分解时间对红椿凋落叶的全碳释放率影响极显著(P〈0.01),林窗大小对全碳释放有显著影响(P〈0.05),而林窗内不同位置(中心和边缘)对凋落叶碳释放无显著影响;4)凋落物分解温度、含水率和全碳释放率、质量损失速率表现出极显著正相关(P〈0.01)。In order to readjust the structure of pine forest and explore the regularity of litter carbon release in forest gaps of Pinus massoniana plantation, a field litterbag experiment was set up in thinning Pinus massoniana plantation with seven different sizes of forest gaps(G1:100 m2, G2: 225 m2, G3: 400 m2, G4: 625 m2, G5: 900 m2, G6: 1 225 m2, G7: 1 600 m2). The effect of the sized of forest gap on carbon release rate of Toona ciliata leaf litter was studied.The results indicated that: 1) Compared with the small size(100- 200 m2) and the large size(1 225- 1 600 m2) of forest gaps, the medium sized(400- 625 m2) forest gaps promoted the carbon release. 2) The carbon release rate in early period of the first 30 days is higher than in the following periods. The carbon release rate shows that after a decomposition of 90 days,there is a phenomenon of carbon concentration enrichment. 3) The carbon release is affected by the gap size, within- gap location, and decomposition time as well. Decomposition time has extremely significant effect on carbon release(P〈0.01), and gap size also has significant effect on carbon release(P〈0.05). However, there is no significant effect of within- gap location on carbon release. 4) The temperature and moisture have extremely significant positive correlation(P〈0.01) with carbon release rate and mass loss rate.
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