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Tests of soil organic carbon density modeled by InTEC in China's forest ecosystems

机译:InTEC模拟的中国森林生态系统中土壤有机碳密度的测试

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The integrated terrestrial ecosystem C-budget model (InTEC) developed by Chen and co-workers has been used successfully to predict carbon dynamics of forests in Canada. It was tested here for forest soil organic carbon (SOC) density of China's northern temperate zone and southern subtropical zone. The results show that the simulated SOC density is highly correlated and in broad agreement with observations in Liping and in Changbaishan, representing the southern subtropical zone and the northern temperate zone in China, respectively. SOC density ranged from 2.2 to 11.2 kg/m~2 in Liping and from 3.4 to 14.8 kg/m~2 in Changbaishan. The correlation coefficients (r~2) are 0.63 (N = 16) and 0.76 (N = 14) between the simulated and measured data in Liping and Changbaishan, respectively. The SOC densities under different vegetation types in Liping decrease in the order of mixed forest, broadleaf forest, Chinese fir, couch grass, and Chinese redpine, and in Changbaishan in the order of mixed forest, silver fir, larch forest, and birch forest.
机译:由Chen和他的同事开发的综合陆地生态系统C预算模型(InTEC)已成功用于预测加拿大森林的碳动态。在此对中国北部温带地区和南部亚热带地区的森林土壤有机碳(SOC)密度进行了测试。结果表明,模拟的SOC密度高度相关,并且与分别代表中国南部亚热带地区和北部温带地区的黎平和长白山的观测值高度吻合。黎平的SOC密度为2.2〜11.2 kg / m〜2,长白山的SOC密度为3.4〜14.8 kg / m〜2。李平和长白山的实测数据之间的相关系数(r〜2)分别为0.63(N = 16)和0.76(N = 14)。黎平县不同植被类型下的SOC密度按混合林,阔叶林,杉木,长草和红松的顺序降低,而在长白山,混合林,银杉,落叶松林和桦木的顺序降低。

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