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ESTIMATION OF GLOBAL CO_2 EMISSION FROM SOIL USING TEMPERATURE AND WATER CONTENT MEASURED BY MODIS

机译:利用MODIS测量温度和水分估算土壤中的全球CO_2排放。

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Soil is a major carbon (C) reserve in terrestrial ecosystems, and the CO_2 flux from soil (soil respiration: SR) is an important component of the C balance between terrestrial ecosystems and atmosphere. SR rate was affected by soil temperature and/or soil water content, therefore with their spatial and temporal variations. Few studies had estimated the global annual soil respiration based on experimental equations by field observation and actual climate data. The object of the this study is to estimate the annual SR on the global scale using the experimental equations and climate products of land surface temperature and Keetch-Byram drought index from MODIS measurements. The empirical equations for estimation of SR rate were selected from field observations at 14 ecosystems. The field observation studies indicated that SR rates in boreal and tropical region were dependent on soil temperature and soil water content respectively. SR in temperate region was deminated by temporal variation of both soil temperature and water content. Annual mean SR at 14 ecosystems were estimated, although they ranged from 291 to 1883 gC m~(-2) y~(-1). In the future work, we will compare the result of biogeochemical model (VISIT) and previous studies (e.g. Bond-Lamberty and Thomson, 2010) with that of this study.
机译:在陆地生态系统中,土壤是主要的碳(C)储备,而土壤中的CO_2通量(土壤呼吸:SR)是陆地生态系统与大气之间C平衡的重要组成部分。 SR率受土壤温度和/或土壤含水量的影响,因此受其时空变化的影响。很少有研究通过野外观察和实际气候数据根据实验方程估算全球年度土壤呼吸。这项研究的目的是使用地表温度和Keetch-Byram干旱指数的实验方程和气候积从MODIS测量中估算全球范围内的年度SR。从14个生态系统的实地观察中选择了估算SR率的经验方程。野外观察研究表明,北方和热带地区的SR率分别取决于土壤温度和土壤含水量。温带地区的SR取决于土壤温度和含水量的时间变化。估计了14个生态系统的年平均SR,尽管它们的范围为291至1883 gC m〜(-2)y〜(-1)。在未来的工作中,我们将比较生物地球化学模型(VISIT)和以前的研究结果(例如Bond-Lamberty和Thomson,2010年)与本研究的结果。

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