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The spatio-temporal responses of the carbon cycle to climate and land use/land cover changes between 1981-2000 in China

机译:1981-2000年中国碳循环对气候和土地利用/土地覆盖变化的时空响应

摘要

This paper represents the first national effort of its kind to systematically investigate the impact of changes in climate and land use and land cover (LULC) on the carbon cycle with high-resolution dynamic LULC data at the decadal scale (1990s and 2000s). Based on simulations using well calibrated and validated Carbon Exchanges in the Vegetation-Soil-Atmosphere (CEVSA) model, temporal and spatial variations in carbon storage and fluxes in China may be generated empower us to relate these variations to climate variability and LULC with respect to net primary productivity (NPP), heterotrophic respiration (HR), net ecosystem productivity (NEP), storage and soil carbon (SOC), and vegetation carbon (VEGC) individually or collectively. Overall, the increases in NPP were greater than HR in most cases due to the effect of global warming with more precipitation in China from 1981 to 2000. With this trend, the NEP remained positive during that period, resulting in a net increase of total amount of carbon being stored by about 0.296 PgC within a 20-year time frame. Because the climate effect was much greater than that of changes of LULC, the total carbon storage in China actually increased by about 0.17 PgC within the 20-year time period. Such findings will contribute to the generation of carbon emissions control policies under global climate change impacts.
机译:本文代表了此类国家的首次努力,该研究利用年代际尺度(1990年代和2000年代)的高分辨率动态LULC数据,系统地研究了气候,土地利用和土地覆被(LULC)变化对碳循环的影响。基于在植被-土壤-大气(CEVSA)模型中使用经过良好校准和验证的碳交换的模拟,可以产生中国碳储量和通量的时空变化,从而使我们能够将这些变化与气候变化和LULC相关联净初级生产力(NPP),异养呼吸(HR),净生态系统生产力(NEP),存储和土壤碳(SOC)以及植被碳(VEGC)。总体而言,由于全球变暖的影响,在1981年至2000年期间,中国的NPP增幅大于HR增幅。在这种趋势下,NEP在此期间保持正值,导致总量净增在20年的时间内碳的储存量约为0.296 PgC。由于气候影响远大于LULC的变化,因此20年内中国的总碳存储量实际上增加了约0.17 PgC。这些发现将有助于在全球气候变化影响下制定碳排放控制政策。

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