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超声波辅助氰化浸金过程中氰化物的损失行为和机理
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作者 李齐 谢锋 +2 位作者 畅永锋 王伟 张利波 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2023年第2期609-618,共10页
研究超声波对金浸出过程中氰化物损失或分解的影响。比较引入和不引入超声波时浸金过程中氰化物浓度的变化。探讨氰化物初始浓度、p H、温度、气氛、自然损失、水解和空化效应对氰化物损失的影响。结果表明,在传统氰化浸金工艺中,氰化... 研究超声波对金浸出过程中氰化物损失或分解的影响。比较引入和不引入超声波时浸金过程中氰化物浓度的变化。探讨氰化物初始浓度、p H、温度、气氛、自然损失、水解和空化效应对氰化物损失的影响。结果表明,在传统氰化浸金工艺中,氰化物的损失主要是由水解、氧化和与CO_(2)反应造成的。随着超声波的引入,具有氧化性的·OH自由基使氰化物的损失略微增加。对总氰化物和游离氰化物浓度变化的比较证明,在实际浸出中引入120 W超声波对氰化物损失影响较小。 展开更多
关键词 超声波 氰化法 氰化物损失 ·OH自由基
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Efficient destruction of sodium cyanide by thermal decomposition with addition of ferric oxide 被引量:4
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作者 Kai-wei DONG Feng XIE +3 位作者 Wei WANG yong-feng chang Chun-lin CHEN Xiao-wei GU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第4期1113-1126,共14页
Efficient destruction of cyanide by thermal decomposition with ferric oxide addition was proposed. The mechanism of destruction of sodium cyanide with or without ferric oxide addition under various conditions was exam... Efficient destruction of cyanide by thermal decomposition with ferric oxide addition was proposed. The mechanism of destruction of sodium cyanide with or without ferric oxide addition under various conditions was examined by XRD, DSC-TG, and chemical analysis technologies. In the absence of ferric oxide, sodium cyanide decomposes at 587.4 ℃ in air and 879.2 ℃ in argon atmosphere. In the presence of ferric oxide, about 60% of sodium cyanide decomposes at 350 ℃ for 30 min in argon, while almost all sodium cyanide decomposes within 30 min in air or O2 with mass ratio of ferric oxide to sodium cyanide of 1:1. The increase of ferric oxide addition, temperature, and heating time facilitates the destruction of sodium cyanide. It is believed that with ferric oxide addition, NaCN reacts with Fe2O3 to form Na4Fe(CN)6, Na2CO3, NaNO2 and Fe3O4 in argon. NaCN decomposes into NaCNO, Na4Fe(CN)6, minor NaNO2, and the formed NaCNO and Na4Fe(CN)6 further decompose into Na2CO3, CO2, N2, FeOx, and minor NOx in air or O2. 展开更多
关键词 cyanide destruction thermal decomposition ferric oxide catalytic oxidation sodium cyanide
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