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Simulating the Carbon Storage of Spruce Forests Based on the FORECAST Model and Remotely Sensed Data

机译:基于预测模型和远程感测数据模拟云杉林的碳储存

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Spruce (Picea asperata) is a special species of China, it is the main tree building species of high mountains in Sichuan, and plays an important role in the restoration of degraded ecosystems in sub-alpine areas in western China. In this study, impacts of different rotation lengths on carbon storage over 480 years were simulated using the ecosystem Model FORECAST for spruce, FORECAST_SPRUCE. Four rotation lengths were set up; include 40, 80, 120 and 160-year rotation. Results suggested that the sustainable management strategies for maintaining long-term site productivity in spruce forest would be 120-160-year rotation lengths under stem-only harvesting. The stem carbon accumulation and total tree carbon accumulation are the highest under 80-year rotation. And the soil carbon storage declines, no matter which rotation length we choose, but the degree of the regeneration becomes less as the rotation length gets longer. The spatial distribution of spruce forest production and carbon sequestration capacity show the higher site quality and net primary productivity in Southwest Sichuan.
机译:Spruce(Picea Asperata)是中国的特殊物种,它是四川高山的主要树木建筑,在恢复中国西部亚高山地区的退化生态系统方面发挥着重要作用。在这项研究中,使用云杉的生态系统模型预测模拟了480岁以上的不同旋转长度对碳储存的影响。设置了四个旋转长度;包括40,80,120和160年旋转。结果表明,维持云杉森林长期现场生产力的可持续管理策略将是纯收获的120-160年旋转长度。茎碳堆积和总树碳积累是80年旋转的最高。并且土壤碳储存下降,无论我们选择哪个旋转长度,但随着旋转长度变长,再生的程度都不会减少。云杉森林产量的空间分布和碳封存能力呈四川西南部的现场质量和净初级生产力。

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