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Titlebook: New Directions in Mineral Processing, Extractive Metallurgy, Recycling and Waste Minimization; An EPD Symposium in Ramana G. Reddy,Alexand

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Estimated End-of-Life Lithium-Ion Battery Resources for Potential Recycling in Bangladesh,cycling industry in Bangladesh. Four main sources were identified in the battery waste pool: mobile phones, laptop and tablet PCs, small handheld devices, and hybrid electric vehicles. Their predicted generation rate and volume by type were forecasted to the year 2041 based on the available historic
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Comparison of Hydrogen Reduction of Different Lead-Bearing Materials for Lead Recovery, production process. Recycling of lead from secondary resources using hydrogen as a reducing agent is industrially important to promote circular economy, resource efficiency, and reduction of carbon footprint. The current study evaluates and compares the general reduction mechanism of PbO with a mor
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Selective Separation and Recovery of Titanium from Titanium Alloy Grinding Scrap Via the Electrostaanium alloy machining process. TAGS cannot be sent back directly to the vacuum smelting process due to its high-content of impurities such as the grinding wheel ash and titanium oxides. In this study, a process of Electrostatic Separation-Oxidative Roasting-Acid Leaching was applied to separate and
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Research and Industrial Application of Selenium and Tellurium Recovery Processes,mpounds yet dissimilar in terms of properties and behavior. The first part of this paper describes selenium and tellurium in terms of their chemical reactions. The second part presents applications of selenium and tellurium recovery processes that are hot topics in today’s extractive metallurgy field.
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https://doi.org/10.1007/978-3-031-22765-3Energy & Environment; Mineral Processing; Pyrometallurgy; Electrometallurgy; E-waste recycling
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978-3-031-22767-7The Minerals, Metals & Materials Society 2023
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