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首页> 外文期刊>Land Degradation and Development >CHARACTERISATION OF PRODUCTIVITY LIMITATION OF SALT-AFFECTED LANDS IN DIFFERENT CLIMATIC REGIONS OF EUROPE USING REMOTE SENSING DERIVED PRODUCTIVITY INDICATORS
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CHARACTERISATION OF PRODUCTIVITY LIMITATION OF SALT-AFFECTED LANDS IN DIFFERENT CLIMATIC REGIONS OF EUROPE USING REMOTE SENSING DERIVED PRODUCTIVITY INDICATORS

机译:基于遥感的生产力指标表征欧洲不同气候区盐碱化土地的生产力极限

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摘要

Soil salinity is a global issue and one of the major causes of land degradation. The large scale monitoring of salt-affected areas is therefore very important to shed light on necessary rehabilitation measures and to avoid further land degradation. Weaddress the productivity limitation of salt-affected soils across the European continent by the usage of soil maps and high temporal resolution time series of satellite images derived from the SPOT vegetation sensor. Using the yearly dynamism of the vegetation signal derived from the Normalised Difference Vegetation Index, we decomposed the spectral curve into its base fraction and seasonal dynamism fractions next to an index approximating gross primary productivity. We observe gross primary productivity, base fraction and seasonal dynamism productivity differences of saline, sodic and not salt-affected soils under croplands and grasslands in four major climatic zones of the European continent. Analysis of variance models and post hoc tests of mean productivity values indicate significant productivity differences between the observed salt-affected and salt free areas, between management levels of soils as well as between the saline and sodic character of the land. The analysis gives insight into thelimiting effect of climate in relation to the productivity of salt-affected soils. The proposed indicators are applicable on the global level, are objective and readily repeatable with yearly updates, thus, might contribute to the global operational monitoring and assessment of degraded lands.
机译:土壤盐分是一个全球性问题,也是土地退化的主要原因之一。因此,对受盐灾地区进行大规模监测对于阐明必要的恢复措施并避免进一步的土地退化非常重要。通过使用土壤图和源自SPOT植被传感器的卫星图像的高时间分辨率时间序列,我们解决了整个欧洲大陆受盐影响的土壤的生产力限制。使用从归一化植被指数获得的植被信号的年动态,我们将光谱曲线分解为其基础分数和季节性动能分数,然后将其近似为接近总初级生产力的指数。我们观察到欧洲大陆四个主要气候区的农田和草地下的盐碱土壤,苏打土壤和非盐渍土壤的总初级生产力,基本分数和季节性动态生产力差异。方差模型的分析和事后平均生产率值的事后检验表明,观察到的受盐影响和无盐地区之间,土壤的管理水平之间以及土地的盐分和钠盐特性之间存在明显的生产率差异。通过分析,可以深入了解气候对盐分土壤生产力的限制作用。拟议指标在全球范围内适用,是客观的并且可以随年度更新随时重复,因此可能有助于对退化土地进行全球业务监测和评估。

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