Lithium Brine Deposit Formation

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Lithium Brine Deposit Formation ( lithium-brine-deposit-formation )

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Remote Sens. 2022, 14, x FOR PEER REVIEW 3 of 21 Remote Sens. 2022, 14, 1383 3 of 22 rive iron oxide minerals, hydrothermal alteration zones, and other units; (3) mineral quan- tification mapping and lithological discrimination [13,14], where multi- and hyperspectral data are used to detect specific mineral spectral features, e.g., absorption bands, for sedi- igneous, and metamorphic rocks; and (4) groundwater investigation [15,16], where several mentary, igneous, and metamorphic rocks; and (4) groundwater investigation [15,16], types of remote sensing technologies are used to derive indicators of groundwater, since where several types of remote sensing technologies are used to derive indicators of remote sensing cannot penetrate deep into surface. Typical groundwater indicators are fea- groundwater, since remote sensing cannot penetrate deep into surface. Typical ground- tures associated with recharge zones (rivers, lakes, etc.), discharge zones (springs, etc.), soil water indicators are features associated with recharge zones (rivers, lakes, etc.), discharge moisture, landforms, drainage characteristics, depth of weathering, and all the indicators zones (springs, etc.), soil moisture, landforms, drainage characteristics, depth of weather- derived from the above-described applications [7]. ing, and all the indicators derived from the above-described applications [7]. 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