首页> 外文期刊>Journal of environmental sciences >Land-use induced changes in topsoil organic carbon stock of paddy fields using MODIS and TM/ETM analysis:A case study of Wujiang County,China
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Land-use induced changes in topsoil organic carbon stock of paddy fields using MODIS and TM/ETM analysis:A case study of Wujiang County,China

机译:利用MODIS和TM / ETM分析土地利用方式改变稻田表土有机碳储量:以吴江县为例

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摘要

Topsoil soil organic carbon (SOC) that plays an important role in mitigating atmospheric carbon dioxide (CO2) buildup is greatly affected by human activities.To evaluate the influence of land-use changes on SOC stocks in paddy soils,a new algorithm was developed by integrating MODIS (moderate resolution imaging spectral-radiometer) and TM/ETM data for timely monitoring the land-use change in Wujiang County.Thereafter,the land-use class-maps derived from MODIS and TM/ETM analyses were further used to estimate land use-induced carbon (C) pool changes in paddy topsoil of Wujiang County based upon the nationwide arable soil monitoring data and county level SOC reconnaissance data in 2003.The results showed that irrigation-based rice cultivation in Wujiang County has resulted in SOC content at an annual increasing rate of 0.01 g/kg over the period of 1984-2003,while the density of SOC in uplands and woodlands has decreased.Annual decreasing rate of SOC content was estimated to be 0.03 g/kg in uplands and 0.06 g/kg in woodlands.The total topsoil SOC stocks in paddy fields of Wujiang County have increased from 2.67 x 10~6 t C in 1984 to 2.69 x 10~6 t C in 2005.During 1984-2005,the total SOC sequestrations in rice paddies were greater than the SOC losses in woodlands and uplands.The temporal C loss might have exceeded the SOC sequestration in rice paddies due to their conversion to nursery lands and uplands since 2001.The results of this study suggest that changes of land use have a great influence on soil C sequestration,particularly on C stocks and C sequestration potential in paddy fields in developed areas of China.
机译:土壤碳在减少大气中二氧化碳的积累中发挥着重要作用。受人类活动的影响。结合MODIS(中分辨率成像光谱辐射仪)和TM / ETM数据,及时监测吴江县的土地利用变化。此后,进一步利用MODIS和TM / ETM分析得出的土地利用分类图来估算土地基于2003年全国耕地监测数据和县级SOC勘查数据,吴江县稻田土壤利用诱导碳(C)库的变化。结果表明,吴江县灌溉水稻种植导致SOC含量升高; 1984-2003年间,SOC的年增长率为0.01 g / kg,而旱地和林地的SOC密度却下降了.SOC的年下降率估计为0.03 g / kg吴江县水田的表层土壤SOC总量从1984年的2.67 x 10〜6 t C增加到2005年的2.69 x 10〜6 tC.1984-2005年期间稻田的总SOC固结量大于林地和高地的SOC损失量。由于2001年以来向水稻田和旱地转化,暂时的C损失量可能超过了SOC的固存量。土地利用方式对土壤碳固存有很大影响,特别是对中国发达地区稻田土壤碳储量和碳固存潜力的影响。

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