首页> 外文会议>Geoscience and Remote Sensing Symposium, 2003. IGARSS '03. Proceedings. 2003 IEEE International >The carbon flux estimation of China terrestrial ecosystems based on NOAA/AVHRR data
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The carbon flux estimation of China terrestrial ecosystems based on NOAA/AVHRR data

机译:基于NOAA / AVHRR数据的中国陆地生态系统碳通量估算

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Net ecosystem productive (NEP) is defined as the net carbon dioxide flux to or from an ecosystem without natural or human disturbance, and integrates all ecosystems carbon sources and sinks: NEE=GPP-Ra-Rh. Here NPP was calculated with the light use efficiency model based on NOAA/AVHRR, and the soil respiration of the corresponding ecosystem came from references. On the whole, the NEP shows the terrestrial ecosystem in China is a carbon sink though there are great uncertainties. The geographic gradient of the NEP clearly shows more correlation with temperature on latitude gradient, and with precipitation on longitude. Three main sources of uncertainties were analyzed: (1) land cover classification based on remote sensing; (2) NPP modelling; (3) soil respiration modelling. The observation and modelling integrated with remote sensing will be a very important solution to the carbon source/sink at large spatial sale.
机译:净生态系统生产(NEP)被定义为生态系统的净二氧化碳通量,没有自然或人为干扰,并整合所有生态系统碳源和水槽:NEE = GPP-RA-RH。这里用基于NOAA / AVHRR的光使用效率模型计算NPP,相应的生态系统的土壤呼吸来自参考。总的来说,NEP显示了中国的陆地生态系统是碳水池,尽管存在很大的不确定性。 NEP的地理梯度清楚地表现出与纬度梯度的温度相关的相关性,并且经度降水。分析了三个主要的不确定性来源:(1)基于遥感的土地覆盖分类; (2)NPP建模; (3)土壤呼吸建模。与遥感集成的观察和建模将是对大型空间销售的碳源/水槽的一个非常重要的解决方案。

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