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Visible-infrared spectroscopy and chemical properties of water in mining area

机译:采矿区中可见红外光谱和水的化学性质

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摘要

The present research focuses on investigating the relationship between spectral and chemical characteristics of water samples in Darrehzar mine. In order to reach this aim, the chemical characteristics of water were measured through pH, electrical conductivity (EC) and inductively coupled plasma mass spectrometry (ICP-MS) analysis. Furthermore, the visible near infrared (VNIR) and shortwave infrared (SWIR) spectra of water samples were measured by Analytical Spectral Devices (ASD) FieldSpec(3) spectroradiometer and the relationships between spectral and chemical characteristics of water samples were calculated. Results of the pH and EC measurements showed that water with high acidity and EC values, which indicate the presence of acid drainage, was located inside the mine. High concentrations of copper, sulfur and iron in the samples could be related to copper mineralization and association with acid mine drainage. Results of spectroscopy revealed that second absorption feature (AF2) magnitude correlated significantly with pH (-0.599), EC (0.611) (p < 0.1) and total trace elements plus sulfur (0.822) (p < 0.05). The significant correlation of the AF2 magnitude with concentrations of S (0.854), Pb (0.914), Ni (0.836), Mn (0.834), Co (0.848) and AF3 with the concentration of Fe (0.886) confirms that absorption feature magnitude increases with increasing metals concentrations in water.
机译:本研究致力于研究Darrehzar矿区水样的光谱和化学特性之间的关系。为了达到这种目的,通过pH,电导率(EC)和电感耦合等离子体质谱(ICP-MS)分析来测量水的化学特性。此外,通过分析光谱装置(ASD)Fieldspec(3)光谱仪(3)光谱仪测量水样的可见近红外(VNIR)和空白红外(SWIR)光谱,并计算水样的光谱和化学特性之间的关系。 pH和EC测量结果表明,具有高酸度和EC值的水,表明酸引流的存在,位于矿井内。样品中的高浓度铜,硫和铁与铜矿化和与酸性矿区引流相关有关。光谱结果揭示了用pH(-0.599),EC(0.611)(P <0.1)和总痕量元素加硫(0.822)(P <0.05)显着相关的第二吸收特征(AF2)大小。具有S(0.854),Pb(0.914),Ni(0.836),Ni(0.836),Co(0.834),Co(0.848),Co(0.848),Co(0.848)和AF3浓度的显着相关性,其浓度(0.886)确认吸收特征幅度增加随着金属浓度的增加。

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