Experimental Phase Equilibria and Liquidus of CaO-Al2O3-SiO2-Na2O-B2O3 Slags Relevant to E-waste Processing

IF 2.4 2区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Metallurgical and Materials Transactions B-Process Metallurgy and Materials Processing Science Pub Date : 2023-11-10 DOI:10.1007/s11663-023-02952-9
Md Khairul Islam, Michael Somerville, Mark I. Pownceby, James Tardio, Suresh Bhargava, Nawshad Haque
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Abstract

Abstract Ternary master slags based on the CaO-Al 2 O 3 -SiO 2 system with CaO/SiO 2 (C/S) ratio 0.3–1.0 were doped with 5–20 wt pct of anhydrous borax (Na 2 B 4 O 7 ) to study the phase equilibria of the quinary CaO-Al 2 O 3 -SiO 2 -Na 2 O-B 2 O 3 slag system within the temperature range 1050–1350 °C. This research uses the well-known method of high temperature equilibration of slags followed by rapid quenching. The quenched slag samples were examined using a Scanning Electron Microscope (SEM) and Wavelength Dispersive Electron Probe Microanalysis (WD-EPMA) technique to determine the structure and to analyse the chemistry of the phases in equilibrium. The primary phase of 15 slag compositions was identified and the liquidus temperature of the slags were determined within an uncertainty range of ±10–20 °C by using an iterative approach. Overall, the liquidus temperature of slags decreased with increasing borax content with the highest liquidus reduction observed in slags having a C/S ratio 0.3 and the lowest in the slag series with C/S ratio of 1.0. A comparative analysis of the effect of borax, Na 2 O and B 2 O 3 on the liquidus temperature of slags is discussed. Results indicated that although borax reduces the liquidus of ternary CaO-Al 2 O 3 -SiO 2 slags, the addition of B 2 O 3 individually showed more prominent effects than borax in reducing the slag liquidus. Anorthite (CaO.Al 2 O 3 .2SiO 2 ), pseudowollastonite (CaO.SiO 2 ) and gehlenite (2CaO.Al 2 O 3 .SiO 2 ) primary phases were identified.

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与电子垃圾处理相关的CaO-Al2O3-SiO2-Na2O-B2O3渣的实验相平衡和液相线
摘要:采用CaO/ sio2 (C/S)比为0.3 ~ 1.0的CaO- al2o3 - sio2体系三元母渣,掺入5 ~ 20wt %的无水硼砂(na2b4o7),研究了CaO- al2o3 - sio2 - na2o - b2o3渣体系在1050 ~ 1350℃范围内的相平衡。本研究采用了众所周知的炉渣高温平衡后快速淬火的方法。采用扫描电子显微镜(SEM)和波长色散电子探针显微分析(WD-EPMA)技术对淬火渣样品进行了结构分析和平衡相化学分析。采用迭代法确定了15种矿渣成分的初相,并在±10 ~ 20℃的不确定度范围内确定了矿渣的液相温度。总体而言,随着硼砂含量的增加,炉渣的液相温度降低,其中C/S比为0.3的炉渣液相温度降低幅度最大,C/S比为1.0的炉渣液相温度降低幅度最小。对比分析了硼砂、na2o和b2o3对炉渣液相温度的影响。结果表明,硼砂虽然降低了三元cao - al2o3 - sio2渣的液度,但单独添加b2o3对渣液度的降低效果比硼砂更显著。钙长石(曹。Al 2 O 3 .2 sio2),假硅灰石(CaO。sio2)和辉长石(2CaO)。确定了al2o3、sio2初生相。
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来源期刊
CiteScore
4.90
自引率
20.00%
发文量
293
审稿时长
4.7 months
期刊介绍: Focused on process metallurgy and materials processing science, Metallurgical and Materials Transactions B contains only original, critically reviewed research on primary manufacturing processes, from extractive metallurgy to the making of a shape. A joint publication of ASM International and TMS (The Minerals, Metals and Materials Society), Metallurgical and Materials Transactions B publishes contributions bimonthly on the theoretical and engineering aspects of the processing of metals and other materials, including studies of electro- and physical chemistry, mass transport, modeling and related computer applications. Articles cover extractive and process metallurgy, pyrometallurgy, hydrometallurgy, electrometallurgy, transport phenomena, process control, physical chemistry, solidification, mechanical working, solid state reactions, composite materials, materials processing and the environment.
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