使用含磷光体的组合物在x射线发光分离过程中提高金刚石的可回收性

V. Chanturia, V. Morozov, G. Dvoichenkova, E. Chanturia
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Studies of the mechanism of formation of the X-ray luminescence signal from diamond-phosphor complexes were carried out by determining the degree of coating of the surface of diamonds with phosphors by the visiometric method and the amplitude of the luminescence signal with varying concentrations of phosphor in the emulsion. The effectiveness of the selected compositions of the phosphor-containing composition was evaluated by determining and comparative analysis of the acquired spectral and kinetic characteristics of the diamond-phosphor complexes using the Polyus–M separator. The evaluation of the effectiveness of the selected formulations was determined by the results of a test on industrial X-ray luminescent separators. Research results. The mechanism of formation of the X-ray luminescence signal from a diamond with a phosphorcontaining composition fixed on its surface is determined. 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引用次数: 0

摘要

介绍解决X射线发光分离过程中减少弱发光和异常发光钻石损失的一个有前途的方法是用特殊的磷光体成分来改变它们的光谱特性。所使用的含磷光体的组合物包括无机和有机磷光体,其提供金刚石X射线发光信号的动力学特性的必要变化。工作的目的。研究在X射线发光分离过程中提供所需的光谱特性修改并增加弱发光和异常发光钻石提取的含磷光体组合物的工艺机理和成分选择。方法论结果。研究了由金刚石-磷光体复合物形成X射线发光信号的机制,方法是通过视觉测量法测定磷光体对金刚石表面的涂覆程度以及乳液中不同磷光体浓度时发光信号的振幅。通过使用Polyus–M分离器测定和比较分析获得的金刚石-磷光体复合物的光谱和动力学特性,评估了所选含磷光体组合物的有效性。通过对工业X射线发光分离器的测试结果来确定对所选配方的有效性的评估。研究结果。确定了由表面固定有含磷光体组合物的金刚石形成X射线发光信号的机制。结果表明,总信号是通过荧光辐射的屏蔽和散射衰减的金刚石和磷光体信号的总和,金刚石信号衰减5-15%,磷光体信号衰减20-40%。在组合物中使用基于硫化锌的无机磷光体或基于正硅酸锌和蒽的磷光体的混合物是合理的,从而使弱发光钻石的X射线发光信号的强度增加2.5倍,并保持天然钻石的X光发光信号的形状。建议使用催化裂化作为柴油馏分化合物和重瓦斯油的收集器,这确保了磷光体在金刚石表面的有效固定。提出了组合物的组成(FL-530,蒽,柴油馏分,THCC),其提供了所需的光谱特性的修改和低发光钻石的检测。简历对各种尺寸的钻石进行的测试结果已经确定,由于检测到具有弱发光或异常发光的钻石晶体,钻石的提取量增加了5-15%的可能性。同时,保持了该工艺对金伯利岩矿物所需的选择性。结论。建议在ALROSA加工厂的X射线发光分离方案中实际实施该研究结果,以减少弱发光和异常发光钻石的损失,并将用于进一步研究在金伯利岩富集过程中提高钻石和岩石矿物分离选择性的可能性。
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Increasing the recoverability of diamonds in the process of x-ray luminescent separation using phosphor-containing compositions
Introduction. A promising way to solve the problem of reducing the losses of weakly and abnormally luminescent diamonds in the process of X-ray luminescent separation is to modify their spectral characteristics with special compositions of phosphors. The phosphor-containing compositions used include inorganic and organic phosphors that provide the necessary change in the kinetic characteristics of the diamond X-ray luminescence signal. The purpose of the work. Investigation of the mechanism of the process and selection of compositions of phosphorcontaining compositions that provide the required modification of spectral characteristics and increase the extraction of weakly and abnormally luminescent diamonds in the process of X-ray-luminescent separation. Methodology results. Studies of the mechanism of formation of the X-ray luminescence signal from diamond-phosphor complexes were carried out by determining the degree of coating of the surface of diamonds with phosphors by the visiometric method and the amplitude of the luminescence signal with varying concentrations of phosphor in the emulsion. The effectiveness of the selected compositions of the phosphor-containing composition was evaluated by determining and comparative analysis of the acquired spectral and kinetic characteristics of the diamond-phosphor complexes using the Polyus–M separator. The evaluation of the effectiveness of the selected formulations was determined by the results of a test on industrial X-ray luminescent separators. Research results. The mechanism of formation of the X-ray luminescence signal from a diamond with a phosphorcontaining composition fixed on its surface is determined. It is shown that the total signal is the sum of the diamond and phosphor signals attenuated by screening and scattering of luminescent radiation by 5-15% for the diamond signal and 20-40% for the phosphor signal. The use of inorganic phosphors based on zinc sulfide, or a mixture of phosphor based on zinc orthosilicate and anthracene in compositions is justified, providing an increase in the intensity of the X-ray luminescence signal of a weakly luminescent diamond by 2.5 times, and preserving the shape of the X-ray luminescence signal of natural diamonds. It is proposed to use catalytic cracking as a collector of a diesel fraction compound and heavy gas oil, which ensures effective fixation of the phosphor on the surface of diamonds. The composition of the composition (FL-530, anthracene, diesel fraction, THCC) is proposed, which provides the required modification of spectral characteristics and detection of low-luminous diamonds. Resume. The results of the tests carried out on diamonds of various sizes have established the possibility of increasing the extraction of diamonds by 5-15% due to the detection of diamond crystals with weak or abnormal luminescence. At the same time, the required selectivity of the process with respect to kimberlite minerals is maintained. Conclusions. The results of the research are recommended for practical implementation in X-ray luminescent separation schemes at ALROSA processing plants to reduce losses of weakly and abnormally luminescent diamonds and will also be used in further studies of the possibility of increasing the selectivity of separation of diamonds and rock minerals during kimberlite enrichment.
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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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