铅银渣熔化-烟化过程中银物相演化规律的研究
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白银有色集团股份有限公司,甘肃 白银 730900

作者简介:

冶玉花(1978—),女,本科,冶炼高级工程师,主要研究方向为锌湿法冶金、湿法炼锌综合回收利用、有色冶炼新工艺的开发等方面工作。

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中图分类号:

TF803

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甘肃省科技重大专项(19ZD2GD001)


Phase Evolution of Silver in Lead-Silver Slag During Melting-Fuming Process
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Baiyin Nonferrous Group Co.LTD, Baiyin 730900 , China

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    摘要:

    针对铅银渣中银元素在熔化-烟化过程中物相演化规律开展研究。通过热力学计算分析,研究铅银渣中银物相挥发的热力学机制,并基于热力学理论,开展单因素实验,研究反应温度、配碳比和保温时间对银回收率的影响,得出最佳工艺参数。接着通过观察微观组织形貌,结合理论计算与实验结果,明确铅银渣中银物相在熔化-烟化过程中的演化规律。热力学分析结果表明,铅银渣中的Ag2O会优先挥发到烟尘中;渣中的AgCl不发生氧化反应、还原反应和分解反应,会挥发到烟尘中;渣中的Ag2S不挥发也不发生还原反应,会被氧化成Ag2SO4;在低温时渣中的Ag2SO4会被还原为单质银,单质银与铅、锌形成合金被携带进入烟尘;在高温时,Ag2SO4的蒸气压急剧增大,会挥发到烟尘中。银扩大配渣实验结果表明,烟尘中物相为Ag2O、AgCl、Ag2SO4和单质银,这与热力学分析结果一致。单因素实验表明,回收铅银渣中银的最佳工艺参数为反应温度1300℃、配碳比16.30%、保温时间150min;在此条件下,银回收率为80.26%。

    Abstract:

    The phase evolution of silver in lead-silver slag during melting-fuming process was studied. The thermodynamic mechanism of silver phase volatilization in lead-silver slag was analyzed by thermodynamic calculation and analysis. Based on the thermodynamic theory calculation, the influence of single factor (reaction temperature, carbon proportion and holding time ) on silver recovery rate was studied, and the optimum process parameters were obtained. Then, by observing the microstructure morphology, combined with theoretical calculation and experimental results, the evolution law of silver phase in lead-silver slag during melting-fuming process was clarified. The thermodynamic analysis results show that Ag2O in the lead-silver slag is preferentially volatilized into the soot. AgCl in the slag does not undergo oxidation reaction, reduction reaction and decomposition reaction, and will volatilize into the dust. Ag2S in lead-silver slag does not volatilize or undergo reduction reaction, and will be oxidized to Ag2SO4. At low temperature, Ag2SO4 will be reduced to elemental silver, and elemental silver will form an alloy with lead and zinc, which will be carried into the soot. At high temperatures, the vapor pressure of Ag2SO4 increases sharply and Ag2SO4 volatilizes into the dust. The experimental results of silver slag show that the phases in the dust are Ag2O, AgCl, Ag2SO4 and elemental silver, which is consistent with the results of thermodynamic analysis. The single factor experiment showed that the optimum process parameters for silver recovery from lead-silver slag were reaction temperature of 1300℃, carbon proportion of 16.30%, holding time of 150min. Under these conditions, the silver recovery rate was 80.26%.

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冶玉花, 苟有强, 刘安强. 铅银渣熔化-烟化过程中银物相演化规律的研究[J].绿色矿冶,2024,40(2):26-34.

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  • 收稿日期:2024-01-18
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  • 在线发布日期: 2025-11-15
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