Selecting the rational parameters for restoring filtration characteristics of ores during borehole mining of uranium depositst

IF 2.8 Q2 MINING & MINERAL PROCESSING
Z. Kenzhetaev, K. Togizov, Moldir Abdraimova, Marzhan Nurbekova
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引用次数: 2

Abstract

Purpose. The research purpose is to increase the efficiency of borehole uranium mining by selecting special decolmating solutions and rational parameters of the technology for influencing the seam near-filter zone of geotechnological boreholes, as well as improving the filtration characteristics of the seam, depending on the mineralogical composition of ores and the structure of sediment-forming materials. Methods. The method of X-ray phase analysis was used to study the powders. The core material samples were studied on transparent sections using a LEICA DM 2500 P microscope. The content of the elemental composition of the ores and host rocks in the samples of the productive horizon was controlled using an atomic emission spectrometer. Findings. Based on the research results, quantitative-qualitative characteristics of the host rocks in the productive horizon, sedimentary formations from technological boreholes have been determined, revealing various levels in the productive horizon. It has been found that in the Campanian horizon boreholes, ores have a complex structure and multicomponent sedimentary formations, representing a mixture of sediments of mechanical-chemical origin. Originality. The results of quantitative-qualitative, microscopic, thermal research methods of the characteristics of ore-bearing rocks from various horizons at the Syr Darya depression uranium deposit have been studied and comparatively analyzed. The sedimentary formations of technological boreholes in the productive Santonian, Maastrichtian, Campanian horizons of the Northern Kharasan field, Syr Darya depression, have also been sampled and studied. The choice of the most appropriate composition of chemical reagents for dissolution and prevention of sedimentary formation in porous media has been substan-tiated by the microscopic research method. Practical implications. A detailed study and comparative analysis of the characteristics of ores and host rocks in various productive horizons makes it possible to more accurately plan the mining of blocks, minimizing emerging risks. Using the developed combined technology for intensifying borehole uranium mining, it is possible to increase the efficiency of borehole uranium mining and reduce its operating costs. At the same time, the ecological and industrial safety of the work of intensi-fying the leaching uranium ores increases.
铀矿床钻孔开采中恢复矿石过滤特性的合理参数选择
目的。研究目的是根据矿石的矿物学组成和成砂物质的结构,通过选择特殊的脱色溶液和合理的工艺参数来影响土工钻孔的煤层近过滤带,改善煤层的过滤特性,提高钻孔铀矿开采效率。方法。采用x射线相分析方法对粉末进行了研究。采用LEICA DM 2500 P显微镜在透明切片上对芯材样品进行研究。利用原子发射光谱仪对产层样品中矿石和寄主岩的元素组成含量进行了控制。发现。在研究成果的基础上,确定了生产层位、工艺钻孔沉积层位主岩的定量、定性特征,揭示了生产层位的不同层次。在坎帕尼亚层位钻孔中,矿石具有复杂的构造和多组分的沉积地层,表现为机械-化学成因的混合沉积。创意。对锡尔河坳陷铀矿床各层位含矿岩特征的定量、定性、显微、热研究结果进行了研究和比较分析。对Syr Darya坳陷北Kharasan油田产层Santonian、Maastrichtian、Campanian的技术钻孔的沉积地层也进行了采样和研究。微观研究方法证实了在多孔介质中选择最合适的化学试剂组成来溶解和防止沉积地层。实际意义。对不同生产层位的矿石和主岩特征进行详细的研究和比较分析,可以更准确地规划区块的开采,最大限度地减少新出现的风险。采用所开发的强化钻孔铀矿联合开采技术,可以提高钻孔铀矿开采效率,降低作业成本。同时,强化浸出铀矿石工作的生态安全性和工业安全性也随之提高。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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