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真空蒸馏电解铝废旧阴极炭块分离碳和电解质 被引量:7
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作者 罗铭洋 谷旭鹏 +4 位作者 曲涛 施磊 戴永年 吕飞 田源 《有色金属工程》 CAS 北大核心 2020年第7期47-52,共6页
对电解铝废旧阴极炭块真空蒸馏分离碳和电解质进行了理论分析和实验研究,考察了蒸馏温度、保温时间对碳和电解质分离效果的影响。理论研究表明,在真空条件下电解铝废旧阴极炭块中的碳和电解质具有分离的可能性。实验结果表明,提高蒸馏... 对电解铝废旧阴极炭块真空蒸馏分离碳和电解质进行了理论分析和实验研究,考察了蒸馏温度、保温时间对碳和电解质分离效果的影响。理论研究表明,在真空条件下电解铝废旧阴极炭块中的碳和电解质具有分离的可能性。实验结果表明,提高蒸馏温度和延长保温时间,均可提高铝、氟、钠元素的脱除率和渣中碳含量。在蒸馏压力10~30 Pa、蒸馏温度1350℃、保温时间5 h时,蒸馏渣中的碳含量为82.02%,铝脱除率为74.61%,氟脱除率为97.92%,钠脱除率为99.69%。研究表明,添加造孔剂NH4HCO3可提高铝的脱除率,NH4HCO3的添加量为6%时,铝的脱除率高达96%。研究结果可为真空蒸馏分离碳和电解质提供新的方法,对采用真空蒸馏法处理电解铝废旧阴极炭块具有一定的指导意义和应用价值。 展开更多
关键词 电解铝废旧阴极 真空蒸馏 脱除率 固废回收
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Carbothermic reduction of chromite fluxed with aluminum spent potlining 被引量:5
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作者 Dawei YU Dogan PAKTUNC 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第1期200-212,共13页
Aluminum spent potlining (SPL) was employed as both the fluxing agent and a source of carbonaceous reductant for the carbothermic reduction of chromite, aiming to allow effective separation of alloy from the slag comp... Aluminum spent potlining (SPL) was employed as both the fluxing agent and a source of carbonaceous reductant for the carbothermic reduction of chromite, aiming to allow effective separation of alloy from the slag component. The experimental results show that the carbonaceous component of the SPL is more reactive towards chromite reduction compared to graphite. The formation of refractory spinel (MgAl2O4) on chromite particles hinders further reduction and alloy growth. The slag-making components of the SPL (e.g. nepheline and NaF) form molten slags at low temperatures (~1300℃) and partly dissolve the refractory spinel as well as the chromite. Destruction of the spinel layer with enhanced mass transfer greatly improves the alloy growth, which can be further promoted by reduction at a higher temperature (e.g. 1500℃). Ferrochrome alloy particles grow large enough at 1500℃ in the presence of SPL, allowing effective separation from the slag component using elutriation separation. 展开更多
关键词 CHROMITE carbothermic reduction FERROCHROME aluminum spent potlining
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