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量化 1975 年至 2000 年中国长江上游金沙江流域陆地生态系统碳动态。

Quantifying terrestrial ecosystem carbon dynamics in the Jinsha watershed, upper Yangtze, China from 1975 to 2000.

机构信息

Department of Forestry, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Environ Manage. 2010 Mar;45(3):466-75. doi: 10.1007/s00267-009-9285-9. Epub 2009 Mar 19.

DOI:10.1007/s00267-009-9285-9
PMID:19296154
Abstract

Quantifying the spatial and temporal dynamics of carbon stocks in terrestrial ecosystems and carbon fluxes between the terrestrial biosphere and the atmosphere is critical to our understanding of regional patterns of carbon budgets. Here we use the General Ensemble biogeochemical Modeling System to simulate the terrestrial ecosystem carbon dynamics in the Jinsha watershed of China's upper Yangtze basin from 1975 to 2000, based on unique combinations of spatial and temporal dynamics of major driving forces, such as climate, soil properties, nitrogen deposition, and land use and land cover changes. Our analysis demonstrates that the Jinsha watershed ecosystems acted as a carbon sink during the period of 1975-2000, with an average rate of 0.36 Mg/ha/yr, primarily resulting from regional climate variation and local land use and land cover change. Vegetation biomass accumulation accounted for 90.6% of the sink, while soil organic carbon loss before 1992 led to a lower net gain of carbon in the watershed, and after that soils became a small sink. Ecosystem carbon sink/source patterns showed a high degree of spatial heterogeneity. Carbon sinks were associated with forest areas without disturbances, whereas carbon sources were primarily caused by stand-replacing disturbances. It is critical to adequately represent the detailed fast-changing dynamics of land use activities in regional biogeochemical models to determine the spatial and temporal evolution of regional carbon sink/source patterns.

摘要

量化陆地生态系统碳储量的时空动态以及陆地生物圈与大气之间的碳通量对于我们理解区域碳预算模式至关重要。在这里,我们使用通用集合生物地球化学建模系统,根据气候、土壤特性、氮沉降以及土地利用和土地覆被变化等主要驱动力的独特时空动态组合,模拟了中国长江上游金沙江流域 1975 年至 2000 年的陆地生态系统碳动态。我们的分析表明,1975-2000 年期间,金沙江流域生态系统作为碳汇,平均速率为 0.36 Mg/ha/yr,主要是由于区域气候变化和当地土地利用和土地覆被变化所致。植被生物量积累占汇的 90.6%,而 1992 年前土壤有机碳的损失导致流域内碳的净积累较低,此后土壤成为一个小的碳汇。生态系统碳汇/源模式表现出高度的空间异质性。碳汇与无干扰的森林地区有关,而碳源主要是由林分更替干扰引起的。在区域生物地球化学模型中充分代表土地利用活动的详细快速变化动态,对于确定区域碳汇/源模式的时空演变至关重要。

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本文引用的文献

1
A meta-analysis of the response of soil respiration, net nitrogen mineralization, and aboveground plant growth to experimental ecosystem warming.土壤呼吸、净氮矿化及地上植物生长对实验性生态系统变暖响应的荟萃分析。
Oecologia. 2001 Feb;126(4):543-562. doi: 10.1007/s004420000544. Epub 2001 Feb 1.
2
Modeled responses of terrestrial ecosystems to elevated atmospheric CO: a comparison of simulations by the biogeochemistry models of the Vegetation/Ecosystem Modeling and Analysis Project (VEMAP).陆地生态系统对大气CO浓度升高的模拟响应:植被/生态系统建模与分析项目(VEMAP)生物地球化学模型模拟结果的比较
Oecologia. 1998 Apr;114(3):389-404. doi: 10.1007/s004420050462.
3
评估中国的生态修复项目。
Environ Manage. 2010 Mar;45(3):425-8. doi: 10.1007/s00267-010-9466-6.
Modeling the driving forces of the land use and land cover changes along the upper Yangtze river of China.
建模中国长江上游土地利用/土地覆被变化的驱动力。
Environ Manage. 2010 Mar;45(3):454-65. doi: 10.1007/s00267-009-9377-6. Epub 2009 Sep 26.
4
The human footprint in the carbon cycle of temperate and boreal forests.人类在温带和北方森林碳循环中的足迹。
Nature. 2007 Jun 14;447(7146):848-50. doi: 10.1038/nature05847.
5
Combined climate and carbon-cycle effects of large-scale deforestation.大规模森林砍伐对气候和碳循环的综合影响。
Proc Natl Acad Sci U S A. 2007 Apr 17;104(16):6550-5. doi: 10.1073/pnas.0608998104. Epub 2007 Apr 9.
6
Returning forests analyzed with the forest identity.使用森林身份分析回归森林。
Proc Natl Acad Sci U S A. 2006 Nov 14;103(46):17574-9. doi: 10.1073/pnas.0608343103. Epub 2006 Nov 13.
7
Temperature sensitivity of soil carbon decomposition and feedbacks to climate change.土壤碳分解的温度敏感性及其对气候变化的反馈
Nature. 2006 Mar 9;440(7081):165-73. doi: 10.1038/nature04514.
8
Global consequences of land use.土地利用的全球影响。
Science. 2005 Jul 22;309(5734):570-4. doi: 10.1126/science.1111772.
9
Climate-driven increases in global terrestrial net primary production from 1982 to 1999.1982年至1999年气候驱动下全球陆地净初级生产力的增加。
Science. 2003 Jun 6;300(5625):1560-3. doi: 10.1126/science.1082750.
10
Recent patterns and mechanisms of carbon exchange by terrestrial ecosystems.陆地生态系统碳交换的近期模式与机制
Nature. 2001 Nov 8;414(6860):169-72. doi: 10.1038/35102500.