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SEPARATION OF LITHIUM FROM BRINES

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SEPARATION OF LITHIUM FROM BRINES ( separation-lithium-from-brines )

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The crystal system and lattice constant of the selected lithium manganese oxide was found by applying Sadoway’s method. There are two equations that was used in calculations. First equation is Braggs’ Law, πœ† = 2π‘‘π‘ π‘–π‘›πœƒ Ξ»: Wavelength of the cupper target d: Spacing between the planes in the atomic lattice ΞΈ: Angle between the incident ray and the scattering planes Second equation relates lattice constant with d, 𝑑 = a √h2+π‘˜2+l2 From those two equations, following equation is acquired, πœ†2 = sin2πœƒ 4π‘Ž2 h2+π‘˜2+l2 Eqn. 2 Eqn. 3 Eqn.4 Here the left side of the equation is constant, which means that the right side of the equation must be a constant value too. Wavelength of the cupper target is known as 1.5418 Å. The calculations to find the crystal system of manganese oxide and lattice constant are given in Table 3.10. 62

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Salt water or brine are huge sources for lithium. Most of the worlds lithium is acquired from a brine source. It's even in seawater in a low concentration. Brine is also a byproduct of huge powerplants, which can now use that as an electrolyte and a huge flow battery (which allows storage at the source).

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