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Flow-driven enhancement of neodymium and dysprosium separation from aqueous solutions

Qingpu Wang, Chinmayee V. Subban

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Abstract

Flow-induced non-equilibrium conditions yielded high-purity Dy precipitate from aqueous mixtures of NdCl 3 and DyCl 3 more quickly compared to conventional equilibrium stirred mixing.

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Flow-induced non-equilibrium conditions yielded high-purity Dy precipitate from aqueous mixtures of NdCl 3 and DyCl 3 more quickly compared to conventional equilibrium stirred mixing.

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Available abstract

Flow-induced non-equilibrium conditions yielded high-purity Dy precipitate from aqueous mixtures of NdCl 3 and DyCl 3 more quickly compared to conventional equilibrium stirred mixing.

Key concepts: Dysprosium, Neodymium, Aqueous solution, Flow (mathematics), Separation (statistics), Materials science, Chemistry, Computer science

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Flow-driven enhancement of neodymium and dysprosium separation from aqueous solutions — Research Paper | ScholarLens