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首页> 外文期刊>International Journal of Environmental Science and Technology >Detecting vegetation stress as a soil contamination proxy: a review of optical proximal and remote sensing techniques
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Detecting vegetation stress as a soil contamination proxy: a review of optical proximal and remote sensing techniques

机译:检测植被应力作为土壤污染代理:光学近端和遥感技术的综述

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摘要

Soil contamination is a worldwide crisis, which diminishes food and agricultural production. Alterations in the soil environment due to soil contamination cause biophysical and biochemical changes in vegetation. Due to dynamic nature of these changes, early monitoring can permit for preventive interferences before intense and sometimes inevitable vegetation and soil problems occur. As plants are rooted in soil substrate, vegetation changes can be used as bio-indicators of soil conditions. Traditionally, vegetation changes have been usually determined by visual analysis or detected after major destructive sampling during the growth period. As the characteristics of vegetation influence its spectral properties, effective remote and non-contact detection methods offer an alternative and near real-time way for detecting plant changes, even prior to visual symptoms and negative effects appearance. The aim of the current study is to review the potential of optical proximal and remote sensing techniques at different platforms for indirect assessment of plant-soil interactions via monitoring vegetation anomalies related to soil contamination. It is strongly felt that this rapidly progressing technological direction will permit extending the use of the techniques to geology, soil science and precision agriculture and an overall broad range of applications.
机译:土壤污染是全球危机,减少了粮食和农业生产。土壤环境因土壤污染而改变导致植被的生物物理和生化变化。由于这些变化的动态性质,早期监测可以允许在激烈且有时会发生不可避免的植被和土壤问题之前的预防干扰。由于植物根植于土壤基质,植被变化可用作土壤条件的生物指标。传统上,植被变化通常通过在生长期内主要破坏性取样后进行视觉分析或检测到。随着植被的特征影响其光谱性能,甚至在视觉症状和负面影响外观之前提供替代和近实时方法,用于检测植物变化。目前研究的目的是通过监测与土壤污染有关的植被异常,对不同平台进行间接评估植物 - 土壤相互作用的不同平台的光学近距离和遥感技术的潜力。强烈认为,这种迅速发展的技术方向将允许将技术延长使用地质,土壤科学和精密农业以及整体广泛的应用。

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