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首页> 外文期刊>The Science of the Total Environment >Mapping magnesium sulfate salts from saline mine discharge with airborne hyperspectral data
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Mapping magnesium sulfate salts from saline mine discharge with airborne hyperspectral data

机译:利用机载高光谱数据绘制盐矿排放中的硫酸镁盐图

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摘要

Managing saline water discharges from mining operations is a global environmental challenge. Measuring the location and extent of surface efflorescence can indicate solute movement before changes in electrical conductivity (EC) are detected in waterways. We hypothesised through the use of a case study that ground-based reflectance spectrometry and airborne hyperspectral (450–2500 nm) analysis of surface efflorescence could be a rapid method for monitoring large regions of the surrounding environment, including downstream of remote mines. X-ray diffraction and X-ray fluorescence were used to determine mineralogy and elemental composition of surface salts around a uranium mine. Salt samples were found to be mixtures of magnesium sulfate. The reflectance of field spectra varied depending on the hydration of the mineral, mainly hexahydrite and starkeyite. A constrained energy minimisation technique was used to match the field reflectance spectra to the airborne data. Airborne matches were confirmed at the field sampling sites and surrounds. Salts were also detected at lower matches at mine water irrigation areas where excess mine water had previously been applied. Hence, hyperspectral remote sensing is a potentially rapid and sensitive method for mapping magnesium sulfates over large areas in operating and rehabilitated mines. It was successfully demonstrated as a tool for monitoring and assessment of efflorescence as a result of saline processes.
机译:管理采矿作业中的盐水排放是一项全球环境挑战。在水道中检测到电导率(EC)变化之前,测量表面起泡的位置和程度可以指示溶质的运动。我们通过一个案例研究进行了假设,即基于地面的反射光谱法和表面风化的机载高光谱(450-2500 benm)分析可能是一种监测周围环境大区域的快速方法,包括偏远矿山的下游。 X射线衍射和X射线荧光用于确定铀矿周围地表盐的矿物学和元素组成。发现盐样品是硫酸镁的混合物。场光谱的反射率随矿物(主要是六水合物和星晶石)的水合而变化。约束能量最小化技术用于将场反射光谱与机载数据匹配。在野外采样点和周围地区确认了空降火柴。在矿井水灌溉区较低的火柴区也检测到了盐分,这些矿井以前曾使用过过量的矿泉水。因此,高光谱遥感是一种潜在的快速而灵敏的方法,可用于在运营中和已修复矿山中的大面积区域绘制硫酸镁。它被成功地证明是监测和评估盐渍过程导致的风化的工具。

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