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Combination Of Biochemical And Hyperspectral Remote Sensing Methods For Detection Of Heavy Metal Pollutions In Eucalyptus Leaves (Case Study: The City Of Bam)

机译:桉树叶片重金属污染检测的生物化学和高光谱遥感方法的组合(案例研究:BAM市)

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Environmental pollution may be caused due to mines and mineral deposits. The accumulation of the associated heavy metals in soil and especially at the root zone of plants would result in plant contamination. This paper aims to detect the dominant heavy metals in Eucalyptus leaves using both biochemical and hyperspectral techniques for northern part of Bam in Iran. In this regards, using biochemical approach, some Eucalyptus leaf samples were collected, and their laboratory data containing the concentration of heavy metals were measured by Graphite Furnace Atomic Absorption Spectrometry (GF-AAS). Using ASD FieldSpec3 Pro spectrometer (Analytical Spectral Devices) also, the spectral profile of leaf samples was measured and compared with healthy ones namely control samples. Finally, using supervised classification methods, the spatial distribution of heavy metals was determined by combination of biochemical results, spectral measurements of samples and hyperspectral images of EO-1 satellite. Results showed that Eucalyptus trees accumulates the heavy metals of As and Pb with the average concentrations equalling 9.98 and 14.31 ppb while compared with the relevant control samples equalling 2.32 and 8.98 ppb, respectively. Combination of biochemical and hyperspectral data analysis also proved by increasing heavy metals concentrations in all samples, their spectral profiles for the visible and near infrared regions will be changed in comparison with those obtained from the control sample.
机译:由于矿山和矿物沉积,可能导致环境污染。土壤中相关重金属的积累,尤其是植物根部区域将导致植物污染。本文旨在利用伊朗Bam北部的生物化学和高光谱技术检测桉树叶中的主要重金属。在这方面,采用生化方法,收集了一些桉树叶样品,通过石墨炉原子吸收光谱法(GF-AAS)测量含有重金属浓度的实验室数据。使用ASD FieldSpec3专业光谱仪(分析谱器件)也,测量叶样品的光谱分布,并与健康的叶片进行比较。最后,使用监督分类方法,通过组合生化结果,样品光谱测量和EO-1卫星的高光谱图像来确定重金属的空间分布。结果表明,与等于2.32和8.98ppb的相关对照样品相比,桉树与平均浓度相比,桉树积累了AS和Pb的重金属,其平均浓度为9.98和14.31ppb。通过增加所有样品中的重金属浓度,生化和高光谱数据分析的组合也通过增加了可见和近红外区域的光谱分布,与从对照样品获得的那些相比,将改变。

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