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首页> 外文期刊>Journal of Cleaner Production >Crystallization and vitrification behavior of CaO-SiO_2-Fe_tO-Al_2O_3 slag: Fundamentals to use mineral wastes in production of glass ball
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Crystallization and vitrification behavior of CaO-SiO_2-Fe_tO-Al_2O_3 slag: Fundamentals to use mineral wastes in production of glass ball

机译:CaO-SiO_2-Fe_tO-Al_2O_3炉渣的结晶和玻璃化行为:在玻璃球生产中使用矿物废物的基本原理

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In this study, we investigated the effect of CaO/SiO2 (C/S) ratio on the crystallization behavior of the CaO-SiO2-FetO-Al2O3 slag system, which simulates the mixed mineral wastes of red mud, mine tailings, and waste limestone, using a differential scanning calorimetry (DSC) technique. The crystallization behavior of both isothermal and non-isothermal cooling was simultaneously evaluated using X-ray diffraction (XRD) analysis and scanning electron microscopy (SEM) images. The calculated equilibrium phases, such as pseudo-wollastonite (ps-CaSiO3) and melilite (Ca-2[Al,Fe][Si,Al](2)O-7), crystallized during the cooling process at different C/S ratios (=0.65-1.02). The C/S ratios were varied by simulating the various mixing ratios among red mud, mine tailings, and waste limestone. Even with a relatively low cooling rate of 5 degrees C/min, none of the exothermic peaks were detected during cooling, irrespective of the C/S ratio. However, pseudo-wollastonite and melilite phases in the slag samples were identified by the XRD and SEM analyses, except for the C/S = 0.65 slag. Ability of crystallization increased with increasing C/S ratio due to increased fluidity of the slags based on the structural consideration. As a result, our findings show that crystallization is increasingly difficult with a decrease in C/S ratio. Although the isothermal holding process remains between 900 C and 1200 degrees degrees C for a long period of time at relatively high basicity (C/ S = 1.02) in the present system, weak and delayed crystallization was observed in the slag. Consequently, this study provides evidence that CaO-SiO2-FetO-Al2O3 (C/S = 0.65-1.02) slags exhibit strong vitrification characteristics and control of melts viscosity is important to granulation process to produce commercial grade of glass ball by using mineral wastes such as red mud, mine tailing and waste limestone. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们研究了CaO / SiO2(C / S)比对CaO-SiO2-FetO-Al2O3炉渣系统的结晶行为的影响,该系统模拟了赤泥,矿山尾矿和废石灰石的混合矿物废料。 ,使用差示扫描量热法(DSC)技术。使用X射线衍射(XRD)分析和扫描电子显微镜(SEM)图像同时评估了等温和非等温冷却的结晶行为。计算得出的平衡相,如伪硅灰石(ps-CaSiO3)和硅沸石(Ca-2 [Al,Fe] [Si,Al](2)O-7)在冷却过程中以不同的C / S比结晶(= 0.65-1.02)。通过模拟赤泥,矿山尾矿和废石灰石之间的各种混合比来改变C / S比。即使以5℃/ min的较低冷却速率,在冷却过程中也没有检测到放热峰,而与C / S比率无关。然而,除C / S = 0.65的炉渣外,通过XRD和SEM分析可确定炉渣样品中的假硅灰石和硅镁石相。基于结构考虑,由于炉渣的流动性增加,结晶能力随着C / S比的增加而增加。结果,我们的发现表明,随着C / S比的降低,结晶越来越困难。尽管在本系统中,等温保持过程在相对较高的碱度(C / S = 1.02)下长时间保持在900℃至1200摄氏度之间,但在炉渣中观察到微弱且延迟的结晶。因此,这项研究提供了证据,表明CaO-SiO2-FetO-Al2O3(C / S = 0.65-1.02)炉渣具有很强的玻璃化特性,并且控制熔体粘度对于利用矿物废料生产商业级玻璃球的制粒过程很重要。如红泥,矿山尾矿和废石灰石。 (C)2019 Elsevier Ltd.保留所有权利。

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