期刊文献+
共找到6篇文章
< 1 >
每页显示 20 50 100
库仑滴定法测量高硫矿物中全硫 被引量:1
1
作者 胡彪 熊知明 +1 位作者 莫晓山 刘晓川 《分析仪器》 CAS 2018年第5期30-36,共7页
针对传统库仑滴定法测定高硫矿物全硫含量测量误差较大,精密度较差的现象,进行测试和分析,查找出相关原因。通过优化库仑测硫仪气路结构、合理设置样品粒度和取样量、调整库仑测硫仪的燃烧时间、选择高效的催化剂、采取多元校正曲线模... 针对传统库仑滴定法测定高硫矿物全硫含量测量误差较大,精密度较差的现象,进行测试和分析,查找出相关原因。通过优化库仑测硫仪气路结构、合理设置样品粒度和取样量、调整库仑测硫仪的燃烧时间、选择高效的催化剂、采取多元校正曲线模型等方式改进测试方法。改进后的方法对硫含量在10%~35%的常见矿物具有良好的精密度和准确度,试验数据RSD<1.20%,RE<1.50%,满足日常检验需求。 展开更多
关键词 库仑滴定法 高硫矿物 含量
下载PDF
硫酸钾尾液冷冻回收高硫钾比矿物工艺研究
2
作者 魏红珍 《化工矿物与加工》 CAS 2021年第2期52-56,共5页
以硫酸钾尾液为原料,研究低温冷冻回收高硫钾比矿物合理的工艺技术路线,探寻适宜的贮存条件,为加工车间夏季高温生产硫酸钾提供优质高硫钾比原料。在低温下进行冷冻试验,根据冷冻结晶矿物产率及其干基组分确定适宜的冷冻温度为-15~5℃,... 以硫酸钾尾液为原料,研究低温冷冻回收高硫钾比矿物合理的工艺技术路线,探寻适宜的贮存条件,为加工车间夏季高温生产硫酸钾提供优质高硫钾比原料。在低温下进行冷冻试验,根据冷冻结晶矿物产率及其干基组分确定适宜的冷冻温度为-15~5℃,冷冻制得的结晶矿物硫钾比均在3.0~5.1,符合夏季生产硫酸钾所需原料硫钾比>2.5的要求。高硫钾比矿物贮存试验结果表明,当高硫钾比矿物的含水率低于40%时,可以在30℃下甚至高达55℃的环境中长期贮存。 展开更多
关键词 酸钾尾液 低温冷冻 钾比矿物 钾盐镁矾 贮存条件 结晶
下载PDF
Sulfur phase and sulfur removal in high sulfur-containing bauxite 被引量:15
3
作者 胡小莲 陈文汨 谢巧玲 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第7期1641-1647,共7页
The sulfur phase in high sulfur-containing bauxite was studied by an X-ray diffraction analysis and a chemistry quantitative analysis.The methods for the removal of different shaped sulfur were also discussed.The resu... The sulfur phase in high sulfur-containing bauxite was studied by an X-ray diffraction analysis and a chemistry quantitative analysis.The methods for the removal of different shaped sulfur were also discussed.The results show that sulfur phases in high sulfur-containing bauxites exist in the main form of sulfide sulfur (pyrite) or sulfate sulfur,and the main sulfur forms of bauxites from different regions are not the same.Through a combination of an X-ray diffraction analysis and a chemistry quantitative analysis,the sulfur phases of high sulfur-containing bauxite could be accurately investigated.Deciding the main sulfur form of high sulfur-containing bauxite could provide theoretical instruction for choosing methods for the removal of sulfur from bauxite,and an oxidizing-roasting process is an effective way to remove sulfide sulfur from high sulfur-containing bauxite,the content of S^2-in crude ore in the digestion liquor is above 1.7 g/L,but in the roasted ore digestion liquor,it is below 0.18 g/L.Using the sodium carbonate solution washing technology to wash bauxite can effectively remove sulfate sulfur,the content of the total sulfur in ore is lowered to below 0.2% and can meet the production requirements for the sulfur content. 展开更多
关键词 high sulfur-containing bauxite sulfur phase oxidizing-roasting sodium carbonate solution washing technology
下载PDF
Interaction of sulfur with iron compounds in sodium aluminate solutions 被引量:6
4
作者 李小斌 李重洋 +3 位作者 彭志宏 刘桂华 周秋生 齐天贵 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第2期608-614,共7页
Reaction behaviors of sulfur and iron compounds in sodium aluminate solutions were investigated. The results show that iron compounds can remarkably remove the S2 but cannot get rid of S2Oc2-, SO^2- and SO4^-2 in sodi... Reaction behaviors of sulfur and iron compounds in sodium aluminate solutions were investigated. The results show that iron compounds can remarkably remove the S2 but cannot get rid of S2Oc2-, SO^2- and SO4^-2 in sodium aluminate solutions. The removal efficiency of S^2- using ferrous compound and ferric compound can reach 86.10% and 92.70% respectively when the iron compounds were added with a molar ratio of 2:1 compared with the sulfur in liquors at 100℃. Moreover, several same compounds are formed in those two desulfurization processes with ferrous or ferric compounds, including erdite, hematite, amorphous ferrous sulfide, polymerized sulfur-iron compounds and ferric sulfate. The major difference between these two processes is that the erdite generated from ferrous compounds at the initial reaction stage will convert to a sodium-free product FeS2 at the subsequent stage. 展开更多
关键词 high-sulfur bauxite sodium aluminate iron compounds DESULFURIZATION MECHANISM
下载PDF
Application of response surface methodology in optimization of bioleaching parameters for high-magnesium nickel sulfide ore 被引量:2
5
作者 SUN Jian-zhi WU Biao +1 位作者 CHEN Bo-wei WEN Jian-kang 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1488-1499,共12页
The response surface methodology(RSM)was used to optimize the operating parameters during the bioleaching of Jinchuan high-magnesium nickel sulfide ore.The particle size,acid addition,pulp density and inoculation amou... The response surface methodology(RSM)was used to optimize the operating parameters during the bioleaching of Jinchuan high-magnesium nickel sulfide ore.The particle size,acid addition,pulp density and inoculation amount were chosen as the investigated parameters.To maximize the leaching efficiency of nickel,copper,cobalt and minimize the dissolution of magnesium and iron ions,the model suggested a combination of optimal parameters of particles less than 0.074 mm being 72.11%,sulfuric acid addition being 300 kg/t,pulp density being 5%and inoculation amount being 12.88%.Under the conditions,the average results of three parallel experiments were 89.43%of nickel leaching efficiency,36.78%of copper leaching efficiency,84.07%of cobalt leaching efficiency,49.19%of magnesium leaching efficiency and 0.20 g/L of iron concentration.The model indicated that the most significant factor in response of the leaching efficiency of valuable metal is the particle size,and the most significant factor in response to the leaching efficiency of harmful ions(Mg2+)is the amount of sulfuric acid addition.And according to the suggested models,no significance of the interaction effect between particle size and acid addition was shown.Under the optimized parameters suggested by models,the valuable metals could be separated from harmful ions during the bioleaching process. 展开更多
关键词 high-magnesium nickel sulfide ore BIOLEACHING response surface methodology particle size acid consumption
下载PDF
Pressure Oxidative Leaching of Complex Sulphide Concentrate
6
作者 Vladislav Lj. Matkovie Miroslav D. Sokic Branislav R. Markovic 《Journal of Chemistry and Chemical Engineering》 2011年第9期828-831,共4页
The presented results are related to the leaching of Pb-Zn-Cu-Fe sulphide concentrate, obtained from barite-sulphide ores, under the elevated temperatures and pressures in an autoclave. The leaching process was perfor... The presented results are related to the leaching of Pb-Zn-Cu-Fe sulphide concentrate, obtained from barite-sulphide ores, under the elevated temperatures and pressures in an autoclave. The leaching process was performed using the sulphur acid solution with the oxygen addition for the separation of the targeted metals from the polymetallic concentrate. In this process influences of various parameters were discussed and then correlated to the leached metals, zinc, copper and iron. Zinc, copper and iron were dissolved in a solution, while lead remained as insoluble in the leach residue. The best leaching results were determined under the temperature of 210 ℃ during the 240 min. Obtained leaching degrees were 98% zinc, 95% copper and 96% iron. 展开更多
关键词 Complex concentrate presure leaching sulphuric acid oxygen.
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部