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Method for recovering valuable metal

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TLDR
In this paper, the authors proposed a method for increasing the rate of recovery of valuable metals when waste batteries batteries are treated by a dry process, where the valuable metal recovery method in the dry step S20 includes a melting step ST21 including melting waste batteries to form a melt, a slag separation step ST22 including separating slag from the melt, and an alloy separation step S23 including separating an alloy of valuable metal from the melting, wherein the slag has an aluminium oxide content of 20% by weight to less than 75% by value and an iron content of 5
Abstract
Provided is a method for increasing the rate of recovery of valuable metals when waste batteries batteries are treated by a dry process. The valuable metal recovery method in the dry step S20 includes a melting step ST21 including melting waste batteries to form a melt, a slag separation step ST22 including separating slag from the melt, and an alloy separation step ST23 including separating an alloy of valuable metals from the melt, wherein the slag has an aluminium oxide content of 20% by weight to less than 75% by weight and an iron content of 5% by weight to 40% by weight, calculated as metallic iron, and silicon oxide and calcium oxide are added as fluxes in the melting step ST21 so that the slag can have a melting point of at least 1,500°C, preferably at most 1,650°C.

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References
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Journal ArticleDOI

Predicting coal ash slag flow characteristics (viscosity model for the Al2O3-CaO-'FeO'-SiO2 system)

TL;DR: In this article, a model has been developed which enables the viscosities of coal ash slags to be predicted as a function of composition and temperature under reducing conditions, which can now be used for viscosity predictions in industrial slag systems.
Journal ArticleDOI

Thermodynamic modelling of the system Al2O3SiO2CaOFeOFe2O3 to predict the flux requirements for coal ash slags

TL;DR: In this paper, a model of the system Al2O3, SiO2, CaO, O 2, CaO 2, FeO 2 O 3, Fe2O 3, developed using the F*A*C*T computer system is presented.
Journal ArticleDOI

A quasi-chemical viscosity model for fully liquid slags in the Al2O3-CaO-‘FeO’-SiO2 system

TL;DR: In this article, a structural-based viscosity model for fully liquid silicate slags has been proposed and applied to the Al2O3-CaO-FeO-SiO2 system at metallic iron saturation.
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TL;DR: In this paper, the primary valuable metal concentrate represented by Co and Ni is obtd. as the minus sieve, which is the sieve thereof with a calcium compd, melting the mixture and removing formed slag.
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