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      Synthesis of Cryolite (Na 3AlF 6) from Secondary Aluminum Dross Generated in the Aluminum Recycling Process

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          Abstract

          Secondary aluminum dross (SAD) is regarded as a solid waste of aluminum recycling process that creates serious environmental and health concerns. However, SAD can also be used as a good source of aluminum, so that utilizing the SAD for the production of valuable products is a promising approach of recycling such waste. In the present work, a novel eco-friendly three-step process was proposed for the synthesis of cryolite (Na 3AlF 6) from the SAD, and it consisted of (1) water-washing pretreatment of SAD, (2) extraction of Al component via pyro-hydrometallurgy, including low-temperature alkaline smelting, water leaching and purification of leachate in sequence, (3) precipitation of cryolite from the purified NaAlO 2 solution using the carbonation method. By analysis of the parameter optimization for each procedure, it was found that the maximum hydrolysis efficiency of aluminum nitride (AlN) in the SAD was around 68.3% accompanied with an extraction efficiency of Al reaching 91.5%. On this basis, the cryolite of high quality was synthesized under the following optimal carbonation conditions: reaction temperature of 75 °C, NaAlO 2 concentration of 0.11 mol/L, F/(6Al) molar ratio of 1.10, and 99.99% CO 2 gas pressure, and flow rate of 0.2 MPa and 0.5 L/min respectively. The formation of Na 3AlF 6 phase can be detected by XRD. The morphological feature observed by SEM revealed that the as-synthesized cryolite had a polyhedral shape (~1 μm size) with obvious agglomeration. The chemical composition and ignition loss of the as-synthesized cryolite complied well with the requirements of the Chinese national standard (GB/T 4291-2017).

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          Recovery of valuable products from hazardous aluminum dross: A review

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            Synthesis of various layered double hydroxides using aluminum dross generated in aluminum recycling process

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              Aluminium recovery during black dross hydrothermal treatment

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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                02 September 2020
                September 2020
                : 13
                : 17
                : 3871
                Affiliations
                [1 ]School of Materials Science and Engineering, Dongguan University of Technology, Dongguan 523000, China; wanbb070320@ 123456mail.xjtu.edu.cn (B.W.); sunwt628@ 123456mail.xjtu.edu.cn (W.S.); chenbin@ 123456dgut.edu.cn (B.C.); yiah@ 123456dgut.edu.cn (A.Y.)
                [2 ]School of Materials Science and Engineering, Xi’an Jiaotong University, Xi’an 710049, China
                [3 ]Guangdong Key Laboratory for Advanced Metallic Materials Processing, South China University of Technology, Guangzhou 510640, China; 2018309@ 123456dgut.edu.cn
                [4 ]Department of Electromechanical Engineering, Guangdong University of Science and Technology, Dongguan 523083, China; liufangfang@ 123456gdust.edu.cn
                Author notes
                Article
                materials-13-03871
                10.3390/ma13173871
                7503661
                8b249787-145c-48f3-99fe-18f04bb636a0
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 01 August 2020
                : 27 August 2020
                Categories
                Article

                secondary aluminum dross,recycling,extraction,synthetic cryolite

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