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高温二次火法富集粉煤灰中锗的工艺优化 被引量:4

Process Optimization of Germanium Enrichment from Fly Ash by Second Enrichment Process at High Temperature
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摘要 以含Ge粉煤灰为原料,采用高温二次火法工艺富集粉煤灰中的Ge,重点探究C含量和烧结温度对Ge挥发率的影响,并对其原因进行分析。结果表明,适量的C和适当的烧结温度能促使煤灰中Ge的还原挥发。过量的C会将部分铁氧化物还原为Fe,并与Ge结合形成难挥发的锗酸盐,影响Ge的富集挥发;过高的烧结温度使得C没有充分燃烧生成CO,且部分Ge与CaO、MgO生成复合氧化物,从而降低Ge挥发率。经过前处理的粉煤灰在烧结温度1 700℃、C含量1%、碱度1.0、保温时间1 h的优化条件下,烧结料渣中Ge含量最低,Ge挥发率最高达96.2%。 Using fly ash with germanium as the raw material,the enrichment of Ge from the fly ash was carried out by second enrichment process at high temperature.The effects of C content and sintering temperature on the volatilization rate of Ge were mainly studied,and the reasons were analyzed.The results show that appropriate C content and sintering temperature can promote the reduction and volatilization of Ge in fly ash.Excessive C will reduce part of iron oxides to Fe.And then Fe combines with Ge to form germanate,which is difficult to volatilize,affecting the enrichment and volatilization of Ge.Too high sintering temperature makes C not fully combusted to form CO,and part of Ge combines with CaO and MgO to form composite oxide,which reduces the volatilization rate of Ge.Under the optimum conditions of sintering temperature 1 700 ℃,C content 1%,basicity 1.0 and duration time 1 h,the Ge content of the pretreated fly ash is the lowest and the Ge volatilization rate reaches 96.2%.
作者 刘俊杰 刘丽霞 彭军 柴轶凡 李文挺 安胜利 LIU Jun-jie;LIU Li-xia;PENG Jun;CHAI Yi-fan;LI Wen-ting;AN Sheng-li(School of Materials and Metallurgy,Inner Mongolia University of Science and Technology,Baotou 014000,China;Inner Mongolia Key Laboratory of Advanced Functional Ceramics and Devices,Baotou 014000,China;School of Metallurgical and Ecological Engineering,University of Science and Technology Beijing,Beijing 100083,China)
出处 《稀有金属与硬质合金》 CAS CSCD 北大核心 2020年第2期5-9,共5页 Rare Metals and Cemented Carbides
基金 国家自然科学基金(51564039) 内蒙古自然科学基金(2015MS0553) 内蒙古高校自然科学科研重点项目(NJZZ19123)。
关键词 高温二次火法富集 粉煤灰 挥发率 碳含量 烧结温度 second enrichment at high temperature germanium fly ash volatilization rate carbon content sintering temperature
作者简介 通讯作者:彭军(1975-),男,博士,教授,研究方向为炼钢新工艺、资源二次利用等,E-mail:pengjun@imust.com。
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