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高砷含锗物料浸出优化工艺技术研究
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作者 雷华志 张永平 +2 位作者 子光平 李玉章 何兴军 《云南冶金》 2023年第S01期199-203,共5页
针对某含锗物料中锗存在形态复杂、砷含量高等问题,采用NaOH预处理-高锰酸钾加盐酸氯化蒸馏浸出物含锗物料,实现锗的高效回收,同时降低砷的挥发。首先钠化焙烧高砷含锗物料,改变锗的存在形态,提高锗的蒸出率,然后再加入高锰酸钾,改变砷... 针对某含锗物料中锗存在形态复杂、砷含量高等问题,采用NaOH预处理-高锰酸钾加盐酸氯化蒸馏浸出物含锗物料,实现锗的高效回收,同时降低砷的挥发。首先钠化焙烧高砷含锗物料,改变锗的存在形态,提高锗的蒸出率,然后再加入高锰酸钾,改变砷的价态,蒸馏时抑制砷的挥发。研究表明:与采用常规氯化蒸馏相比,采用该工艺,可将锗回收率从89.2%提高到99.1%,砷挥发率可从86.5%降到5.7%。 展开更多
关键词 高砷含物料 钠化焙烧 高锰酸钾 锗回收率 砷挥发率
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Germanium separation and purification by leaching and precipitation 被引量:4
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作者 Saeid Bayat Sajjad Aghazadeh +2 位作者 Mohammad Noaparast Mahdi Gharabaghi Behrooz Taheri 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2214-2222,共9页
In this research work, extraction and purification of germanium from zinc leach residues(ZLR) were investigated. The results of ICP, XRF, and atomic adsorption spectroscopy(AAS) tests show that contents of germanium, ... In this research work, extraction and purification of germanium from zinc leach residues(ZLR) were investigated. The results of ICP, XRF, and atomic adsorption spectroscopy(AAS) tests show that contents of germanium, iron, lead, and zinc within the leaching residue were 105×10^(-6), 3.53%, 10.35%, and 8.8%, respectively. XRD results indicate that the main minerals were in different forms of sulfates(CaSO_4·2H_2O, PbSO_4 and ZnSO_4·6H__2O), silicate(SiO_2), and oxide(Fe_2O_3). Dissolution of leaching filter cake was carried out using 5 parameters and each in 4 levels(acid concentration, temperature, time, liquid-to-solid ratio, and stirring speed) by Taguchi method(L_(16)), and then optimization of the effective parameters by response surface method. Under optimum conditions, zinc and germanium dissolution efficiencies were 88.71% and 8%, respectively. Leaching tests with sulfuric acid(added di-ammonium oxalate monohydrate) and hydrochloric acid(HCl) on the residues obtained from previous-stage sulfuric acid dissolution, yielded germanium and iron recoveries of 83%, 88%, 40%, and 90%, respectively. Thus, leaching experiment with sulfuric acid(added di-ammonium oxalate monohydrate) was superior to that with hydrochloric acid due to high and low extraction amounts of germanium and iron, respectively. Precipitation experiments revealed that germanium purification with tannic acid presented a better result compared to sodium hydroxide and ammonia. Under optimum conditions, contents of germanium and iron in the solution after precipitation were 0.1505% and 14.7% with precipitation yields of 91% and 52%, respectively. 展开更多
关键词 experimental design di-ammonium oxalate monohydrate GERMANIUM leaching tannic acid
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