Journal of Northeastern University(Natural Science) ›› 2024, Vol. 45 ›› Issue (2): 262-269.DOI: 10.12068/j.issn.1005-3026.2024.02.014
• Resources & Civil Engineering • Previous Articles
Yan SONG1,2, Bing ZHAO1,2, Yan-jun LI1,2, Ling-bo ZHAO1,2
Received:
2022-05-03
Online:
2024-02-15
Published:
2024-05-14
CLC Number:
Yan SONG, Bing ZHAO, Yan-jun LI, Ling-bo ZHAO. Study on Harmless Disposal and Mechanism of Cyanide Tailings of a Gold Mine by Oxidation Roasting[J]. Journal of Northeastern University(Natural Science), 2024, 45(2): 262-269.
SiO2 | Al2O3 | CaO | Fe | MgO | K | Na | 含水 | 烧失量 | C | S | Pb | As |
---|---|---|---|---|---|---|---|---|---|---|---|---|
55.42 | 13.08 | 6.65 | 5.17 | 3.60 | 2.16 | 1.795 | 3.88 | 4.67 | 1.30 | 1.18 | 0.001 | <0.01 |
Table 1 Mass fraction of main elements in cyanide tailings sample of a gold mine in Inner Mongolia
SiO2 | Al2O3 | CaO | Fe | MgO | K | Na | 含水 | 烧失量 | C | S | Pb | As |
---|---|---|---|---|---|---|---|---|---|---|---|---|
55.42 | 13.08 | 6.65 | 5.17 | 3.60 | 2.16 | 1.795 | 3.88 | 4.67 | 1.30 | 1.18 | 0.001 | <0.01 |
硫物相 | 硫化物中硫 | 硫酸盐中硫 | 自然硫 | 总硫 |
---|---|---|---|---|
质量分数/% | 0.98 | 0.19 | 0.01 | 1.18 |
分布率/% | 83.05 | 16.10 | 0.85 | 100.00 |
Table 2 Sulfur phase analysis of cyanide tailings sample
硫物相 | 硫化物中硫 | 硫酸盐中硫 | 自然硫 | 总硫 |
---|---|---|---|---|
质量分数/% | 0.98 | 0.19 | 0.01 | 1.18 |
分布率/% | 83.05 | 16.10 | 0.85 | 100.00 |
硫物相 | 硫化物 | 硫酸盐 | 自然硫 | 总硫 |
---|---|---|---|---|
质量分数/% | 0.13 | 0.83 | 0.01 | 0.97 |
分布率/% | 13.48 | 85.39 | 1.13 | 100 |
Table 3 Chemical phase analysis of sulfur element in samples
硫物相 | 硫化物 | 硫酸盐 | 自然硫 | 总硫 |
---|---|---|---|---|
质量分数/% | 0.13 | 0.83 | 0.01 | 0.97 |
分布率/% | 13.48 | 85.39 | 1.13 | 100 |
1 | Hijosa‐Valsero M, Molina R, Schikora H,et al.Removal of cyanide from water by means of plasma discharge technology[J].Water Research,2013,47(4):1701-1707. |
2 | Li H Y, Wang J, Zhu X J,et al.Evaluation of a green‐sustainable industrialized cleaner utilization for refractory cyanide tailings containing sulfur[J].Science of the Total Environment,2022,827:154359. |
3 | Kuyucak N, Akcil A.Cyanide and removal options from effluents in gold mining and metallurgical processes[J].Minerals Engineering,2013,50:13-29. |
4 | Liu Q, Luo Y T, Shi J Y,et al.Reagent elution combined with positive pressure filtration:a zero‐discharge method for cyanide tailings remediation[J].Journal of Environmental Sciences,2022,113:376-384. |
5 | 袁嘉声,畅永锋,郑春龙,等.氰化尾渣脱氰技术综述[J].中国有色金属学报,2021,31(6):1568-1581. |
Yuan Jia‐sheng, Chang Yong‐feng, Zheng Chun‐long,et al.Review of cyanide tail removal technology[J].Chinese Journal of Nonferrous Metals,2021,31(6):1568-1581. | |
6 | Liu Q, Luo Y T, Shi J Y,et al.Synergistic detoxification by combined reagents and safe filling utilization of cyanide tailings[J].Chemosphere,2023,312:137157. |
7 | Duan Y T, Wu Y M, Huang Y,et al.Harmless treatment of cyanide tailings by a bifunctional strain JK‐1 based on biodegradation and biomineralization[J].Journal of Cleaner Production,2021,313:127757. |
8 | 邵思跃.自然资源部发布绿色矿山评价指标[J].矿产保护与利用,2020,40(3):105. |
Shao Si‐yue.Ministry of Natural Resources released green mine evaluation index[J].Mineral Protection and Utilization,2020,40(3):105. | |
9 | 董煜,柳晓娟,侯华丽,等.绿色矿山评价指标解析[J].中国矿业,2020,29(12):68-74. |
Dong Yu, Liu Xiao‐juan, Hou Hua‐li,et al.Analysis on evaluation index of green mine [J].China Mining,2020,29(12):68-74. | |
10 | 刘影,王莹,郭雪婷,等.因科法-亚铁盐联合处理某黄金矿山含氰尾矿试验研究[J].黄金,2019,40(9):71-74. |
Liu Ying, Wang Ying, Guo Xue‐ting,et al.Experimental study on the combined treatment of cyanide tailings from a gold mine by Inkofa‐ferrite salt[J].Gold,2019,40(9):71-74. | |
11 | Brüger A, Fafilek G, Rojas‐Mendoza L,et al.On the volatilization and decomposition of cyanide contaminations from gold mining[J].Science of the Total Environment,2018,627:1167-1173. |
12 | Kitis M, Akcil A, Karakaya E,et al.Destruction of cyanide by hydrogen peroxide in tailings slurries from low bearing sulphidic gold ores[J].Minerals Engineering,2005,18(3):353-362. |
13 | Gonzalez‐Merchan C, Genty T, Bussière B,et al.Ferrates performance in thiocyanates and ammonia degradation in gold mine effluents[J].Minerals Engineering,2016,95:124-130. |
14 | Tu Y B, Han P W, Wei L Q,et al.Removal of cyanide adsorbed on pyrite by H2O2 oxidation under alkaline conditions[J]. Journal of Environmental Sciences,2019,78:287-292. |
15 | Wei Y M, Wang F, Liu X,et al.Thermal remediation of cyanide‑contaminated soils:process optimization and mechanistic study[J]. Chemosphere,2020,239:124707. |
16 | Au W Y, Yu X Z, Gu J D,et al.Phytoremediation of cyanide and iron cyanide complexes and the mechanisms involved[J]. Applied Environmental Biotechnology,2018,3(1):53-60. |
[1] | YANG Hu, PAN Xiao-lin, WU Hong-fei, YU Hai-yan. Dehydration, Decarburization and Digestion Performance of Gibbsitic Bauxite by Low-Temperature Roasting [J]. Journal of Northeastern University(Natural Science), 2023, 44(7): 944-952. |
[2] | YU Xi, LIU Wen-gang, LIU Wen-bao, PENG Xiang-yu. Roasting and Sulfur Fixation of High-sulfur Coal Gangue by Box-Behnken Response Surface Methodology [J]. Journal of Northeastern University(Natural Science), 2023, 44(2): 265-271. |
[3] | SHAO An-lin , SU Xing-guo, HAN Yue-xin, LI Yan-jun. Experimental Study on Pre-concentration and Suspension Magnetization Roasting of Donganshan Iron Ore Flotation Tailing [J]. Journal of Northeastern University(Natural Science), 2022, 43(5): 703-708. |
[4] | WU Shi-chao, SUN Ti-chang, KOU Jue, CHEN Ze-kun. Effects of Combined Dephosphorization Agents on Reduction Roasting-Magnetic Separation of High Phosphorus Iron Ore [J]. Journal of Northeastern University(Natural Science), 2022, 43(3): 423-430. |
[5] | LIU Xiao , GAO Peng , LYU Yang , YUAN Shuai. Recovery Process of Iron from High-Iron Red Mud Through Suspension Magnetization Roasting-Low Intensity Magnetic Separation Technology [J]. Journal of Northeastern University(Natural Science), 2021, 42(3): 414-421. |
[6] | ZHANG Bo, XUE Xiang-xin, YANG He, RI Jong-chol. Study on Decomposition of Monazite Concentrate in NaOH-Ca(OH)2 [J]. Journal of Northeastern University Natural Science, 2019, 40(9): 1284-1290. |
[7] | TENG Ai-jun, XU Hong-hong, XUE Xiang-xin. Clean Roasting Process for Treating Vanadium Slag by Using Binary Sodium Salts System [J]. Journal of Northeastern University Natural Science, 2019, 40(9): 1291-1297. |
[8] | YU Jian-wen, HAN Yue-xin, GAO Peng, LI Yan-jun. Reductive Transformation of Hematite to Magnetite with CO/CO2 Under Fluidized Bed Conditions [J]. Journal of Northeastern University Natural Science, 2019, 40(2): 261-266. |
[9] | ZHENG Qiang, WU Wen-yuan, BIAN Xue. Experimental Study on One-Step Roasting of Bayan Obo Tailings [J]. Journal of Northeastern University Natural Science, 2018, 39(2): 205-210. |
[10] | ZHANG Xiao-long, HAN Yue-xin, LI Yan-jun, TANG Zhi-dong. New Process of Comprehensive Utilization for Daxigou Refractory Siderite Ore [J]. Journal of Northeastern University Natural Science, 2018, 39(2): 248-253. |
[11] | YU Jian-wen, HAN Yue-xin, LI Yan-jun, CHU Man-sheng. Test on Fluidized Magnetization Roasting of Donganshan Carbonate-Bearing Iron Ore [J]. Journal of Northeastern University Natural Science, 2018, 39(12): 1754-1758. |
[12] | SUN Yong-sheng, CAO Yue, HAN Yue-xin, LI Yan-jun. Oxidation Kinetics of Magnetite During the Cooling Process of Magnetization Roasting [J]. Journal of Northeastern University Natural Science, 2018, 39(12): 1759-1763. |
[13] | LIU Jia-nan, HUANG Jian-di, WU Yan , ZHAI Yu-chun. Preparation of High Purity Al(OH)3from the Sulfating Solution of Potash Feldspar Roasting Residue [J]. Journal of Northeastern University Natural Science, 2017, 38(8): 1102-1106. |
[14] | SHEN Xiao-yi, JIA Chao-hang, LI Hao, WU Kang-long. Reaction Process Analysis of SiO2 and Zn2SiO4 Roasting with Molten NaOH [J]. Journal of Northeastern University Natural Science, 2017, 38(1): 51-56. |
[15] | WANG Ru, HAN Yue-xin, LI Yan-jun, ZHANG Yu-shu. Research on Magnetic Properties of Oolitic Hematite Roasted by Suspension Roasting Furnace [J]. Journal of Northeastern University Natural Science, 2015, 36(7): 1024-1028. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||