Synthesized collectors flotation activity study based on fluorine containing and acetylene alcohols

Aleksander Burdonov, Nadezhda Vchislo, Vyacheslav Barakhtenko, Tatiana Sahabutdinova
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Abstract

Introduction. The article describes the problem of low quality mineral raw materials used for gold mining and considers the possibilities of increasing the efficiency of the technological process of beneficiation of refractory ores. As a result of the study, studies were carried out to study the flotation activity of new collecting reagents and their effect on the surface of sulfide gold-bearing minerals was studied. Research methods and materials. The methods used in the work were NMR, atomic absorption and ultraviolet spectroscopy, electron microscopy, laser diffraction, ore preparation, flotation, and electrophoretic light scattering. To determine the assessment of flotation activity as heteropolar collectors for the flotation of sulfide minerals, a number of synthesized compounds were used: 2-methyl-3-butyn-2-ol, 5-dimethyl-4-methylidene-1,3-oxathiolane-2-thione and 2. 2,3,3,4,4,5,5-octafluoropentyl sodium xanthate. Sulfide ore was used to conduct laboratory flotation studies; the monomineral pyrite was used to study the sorption of the reagent and determine the zeta potential of the surface. The following reagents were also used in the experiment: activator – copper sulfate; heteropolar collectors – potassium butylxanthate (BCX), sodium dialkyldithiophosphate (BTF-1552); organic carbon depressor – beta-sulfonaphthalene formaldehyde sodium salt (oroflos D); blowing agent – methyl isobutyl carbinol (MIBC). Research results and discussion. The synthesis of collecting reagents based on various chemical reactions was carried out and their flotation activity was studied. Several promising compounds have been obtained that have shown results when used as heteropolar collectors for the flotation of sulfide minerals. The research results showed that one of the synthesized reagents, 2-methyl-3-butyn-2-ol, has a positive effect on gold recovery during flotation. This reagent increases recovery by 0.18% and 1.46% when used together with other reagents. It also increases recovery by 1.81% when used alone. This suggests that 2-methyl-3-butyn-2-ol can be used as a replacement for one of the main heteropolar collectors. Determination of UV spectra showed the sorption of 2-methyl-3-butyn-2-ol on the surface of pyrite with an amount of up to 2.388·10-5 mol/m2 depending on the initial concentration of the reagent. The results of determining the zeta potential showed that the reagents significantly reduce this indicator, indicating electrostatic interaction and adsorption of the reagents on the pyrite surface. Conclusion. Overall, this paper describes the development of new harvesting reagents and their effects on the surface of sulfide gold-bearing minerals. The results of the study suggest the possibility of using 2-methyl-3-butyn-2-ol as a replacement for one of the main collectors in flotation. Resume. The article presents the results of studies assessing the flotation activity of a number of synthesized compounds: 2-methyl-3-butyn-2-ol, 5-dimethyl-4-methylidene-1,3-oxathiolan-2-thione and 2,2,3,3 ,4,4,5,5-octafluoropentyl sodium xanthate. The best technological performance during laboratory flotation was found for the reagent 2-methyl-3-butyn-2-ol; the extraction of gold into the concentrate was 84.68%, the content was 10.2%. For this compound, its amount adsorbed on the surface of pyrite was determined to be up to 2.388·10-5 mol/m2 in experiments. A low negative charge on the surface of pyrite was revealed after mixing it with reagent solutions when determining the zeta potential. Suggestions for practical applications and directions for future research. The results of the work can be recommended for further pilot tests with the subsequent development of technology for the industrial production of these reagents in the case of improved technological indicators of flotation gold extraction.
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基于含氟醇和乙炔醇的合成捕收剂浮选活性研究
导言。文章介绍了用于金矿开采的低质量矿物原料问题,并探讨了提高难选矿石选矿技术工艺效率的可能性。作为研究结果,对新型采集试剂的浮选活性进行了研究,并研究了其对硫化含金矿物表面的影响。研究方法和材料。工作中使用的方法有核磁共振、原子吸收和紫外光谱、电子显微镜、激光衍射、矿石制备、浮选和电泳光散射。为了确定硫化矿物浮选异极性捕收剂的浮选活性评估,使用了一些合成化合物:2-甲基-3-丁炔-2-醇、5-二甲基-4-亚甲基-1,3-氧硫杂环戊烷-2-硫酮和 2,2,3,3,4,4,5,5-八氟戊基黄原酸钠。硫化矿被用来进行实验室浮选研究;单矿物黄铁矿被用来研究试剂的吸附性和确定表面的 zeta 电位。实验中还使用了以下试剂:活化剂--硫酸铜;异极性捕收剂--丁基黄原酸钾(BCX)、二烷基二硫代磷酸钠(BTF-1552);有机碳去除剂--β-萘磺酸甲醛钠盐(oroflos D);发泡剂--甲基异丁基甲醇(MIBC)。研究成果和讨论。根据各种化学反应合成了收集试剂,并对其浮选活性进行了研究。获得的几种有前景的化合物在用作硫化矿物浮选的异极性捕收剂时显示出了效果。研究结果表明,合成的试剂之一 2-甲基-3-丁炔-2-醇对浮选过程中的金回收率有积极影响。该试剂与其他试剂一起使用时,回收率可提高 0.18% 和 1.46%。单独使用时,它还能提高 1.81% 的回收率。这表明,2-甲基-3-丁炔-2-醇可用于替代一种主要的异极捕收剂。紫外光谱测定结果表明,根据试剂的初始浓度,2-甲基-3-丁炔-2-醇在黄铁矿表面的吸附量可达 2.388-10-5 mol/m2。zeta 电位测定结果表明,试剂显著降低了这一指标,表明试剂在黄铁矿表面产生了静电作用和吸附作用。结论。总之,本文介绍了新型采金试剂的开发及其对硫化含金矿物表面的影响。研究结果表明,有可能使用 2-甲基-3-丁炔-2-醇替代浮选中的一种主要捕收剂。简历。文章介绍了评估一些合成化合物浮选活性的研究结果:2-甲基-3-丁炔-2-醇、5-二甲基-4-亚甲基-1,3-氧硫杂环戊烷-2-硫酮和 2,2,3,3 ,4,4,5,5- 八氟戊基黄原酸钠。在实验室浮选过程中,2-甲基-3-丁炔-2-醇试剂的技术性能最好;精矿中金的提取率为 84.68%,含量为 10.2%。在实验中,该化合物在黄铁矿表面的吸附量高达 2.388-10-5 mol/m2。在测定 zeta 电位时,将黄铁矿与试剂溶液混合后,发现黄铁矿表面的负电荷较低。实际应用建议和未来研究方向。在浮选提金技术指标得到改善的情况下,可建议对工作结果进行进一步的试点测试,并随后开发这些试剂的工业生产技术。
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来源期刊
Sustainable Development of Mountain Territories
Sustainable Development of Mountain Territories Social Sciences-Sociology and Political Science
CiteScore
2.40
自引率
0.00%
发文量
36
期刊介绍: International scientific journal "Sustainable development of mountain territories" covers fundamental and applied regional, national and international research and provides a platform to publish original full papers and related reviews in the following areas: engineering science and Earth science in the field of sustainable development of mountain territories. Main objectives of international scientific journal "Sustainable development of mountain territories" are: raising the level of professional scientific workers, teachers of higher educational institutions and scientific organizations; presentation of research results in the field of sustainable development of mountain areas on the technical aspects and Earth sciences, informing readers about the results of Russian and international scientific forums; improved review and editing of the articles submitted for publication; ensuring wide dissemination for the published articles in the international academic environment; encouraging dissemination and indexing of scientific works in various foreign key citation databases.
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