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CAPABILITIES OF REMOTE SENSING HYPERSPECTRAL IMAGES FOR THE DETECTION OF LEAD CONTAMINATION: A REVIEW

机译:遥感高光谱图像检测铅污染的能力:综述

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Advances in remote sensing technologies are increasingly becoming more useful for resource, ecosystem and agricultural management applications to the extent that these techniques can now also be applied for monitoring of soil contamination and human health risk assessment. While, extensive previous studies have shown that Visible and Near Infrared Spectroscopy (VNIRS) in the spectral range 400-2500 nm can be used to quantify various soil constituents simultaneously, the direct determination of metal concentrations by remote sensing and reflectance spectroscopy is not as well examined as other soil parameters. The application of VNIRS, including laboratory hyperpectral measurements, field spectrometer measurements or image spectroscopy, generally achieves a good prediction of metal concentrations when compared to traditional wet chemical methods and has the advantage of being relatively less expensive and faster, allowing chemical assessment of contamination in close to real time. Furthermore, imaging spectroscopy can potentially provide significantly more samples over a larger spatial extent than traditional ground sampling methods. Thus the development of remote sensing techniques (field based and either airborne or satellite hyperspectral imaging) can support the monitoring and efficient mapping of metal contamination (in dust and soil) for environmental and health impact assessment. This review is concerned with the application of remote sensing and reflectance spectroscopy to the detection of heavy metals and discusses how current methods could be applied for the quantification of Pb contaminated soil surrounding mines and smelters.
机译:遥感技术的发展正日益成为这些技术现在也可用于监测土壤污染与人体健康风险评估资源,生态系统和农业管理应用的程度更为有用。同时,广泛以前的研究已经表明,可见光和近红外光谱(VNIRS)在光谱范围内400-2500纳米可以用于同时定量多种土壤成分,直接测定通过遥感和反射光谱金属浓度是没有得到很好的检查其他土壤参数。 VNIRS的应用,包括实验室hyperpectral测量,场光谱仪测量或图像光谱,相对于传统的湿法化学方法时,通常达到的金属浓度的良好预测和具有相对较便宜和更快的优点,允许污染的化学评估接近实时。此外,成像光谱可以潜在地提供在比传统的地面取样方法的较大空间范围显著更多的样品。因此遥感技术的发展(基于场的和无论是在空中或卫星高光谱成像)能够支持的环境和健康影响的评估(在灰尘和土壤)监测和金属污染的有效映射。这一审查涉及遥感和反射光谱应用到重金属检测,并讨论如何目前的方法可以适用于铅污染的土壤周围的矿山和冶炼厂的量化。

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