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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Corrosion mechanism of magnesia-chromite refractories by ZnO-containing fayalite slags: Effect of funnel glass addition
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Corrosion mechanism of magnesia-chromite refractories by ZnO-containing fayalite slags: Effect of funnel glass addition

机译:含有ZnO铬铁矿腐蚀的腐蚀机理通过ZnO的脱盐渣:漏斗玻璃加成的影响

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摘要

An efficient approach for lead extraction from waste funnel glass through the lead smelting process has been proposed. To clarify the effect of funnel glass addition on the degradation of magnesia-chromite refractories by ZnO-containing fayalite slag, the corrosion behavior of magnesia-chromite refractories in lead smelting slags with different funnel glass additions from 0wt% to 40wt% was tested. Scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDS) was used to acquire the microstructural information of the worn refractory samples. Experimental results showed that the corrosion of magnesia-chromite refractory consisted predominantly of the dissolution of MgO into slag. ZnO and FeO reacted with periclase and chromite to form (Zn,Fe,Mg)O solid solution and (Zn,Fe,Mg)(Fe,Al,Cr)(2)O-4 spinel, respectively. With the addition of funnel glass, the solubility of MgO increased whereas ZnO levels remained stable, thereby resulting in a reduced Mg content and an elevated Zn and Fe content in the (Zn,Fe,Mg)O solid solution and the (Zn,Fe,Mg)(Fe,Al,Cr)(2)O-4 spinel. Considering the stability of the (Zn,Fe,Mg)O solid solution layer and the penetration depth of the slag, the optimal funnel glass addition for lead smelting was found to be 20wt%.
机译:已经提出了通过铅冶炼过程从废物漏斗玻璃中引入铅提取的有效方法。为了澄清漏斗玻璃的作用,含有ZnO的铬铁矿炉渣的氧化镁铬铁矿耐火的降解,测试了用不同漏斗玻璃的铅冶炼渣中的氧化镁铬铁矿耐火材料的腐蚀行为从0wt%至40wt%。使用能量分散X射线光谱(SEM-EDS)扫描电子显微镜,用于获取磨损的难治性样品的微观结构信息。实验结果表明,氧化镁铬铁矿耐火的腐蚀主要由MgO溶解成炉渣。 ZnO和Feo与纤维化酶和铬铁矿反应形成(Zn,Fe,Mg)O固溶体和(Zn,Fe,Mg)(Fe,Al,Cr)(2)O-4尖晶石。随着漏斗玻璃的加入,MgO的溶解度增加,而ZnO水平保持稳定,从而导致(Zn,Fe,Mg)O固体溶液和(Zn,Fe)中升高的锌含量和升高的Zn和Fe含量。(Zn,Fe ,mg)(Fe,Al,Cr)(2)O-4尖晶石。考虑到(Zn,Fe,Mg)O固溶层和炉渣的渗透深度的稳定性,发现铅冶炼的最佳漏斗玻璃添加为20wt%。

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