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首页> 外文期刊>E3S Web of Conferences >Substantiation of field of application of combined (traditional and physicaland-chemical) geotechnologies for the development of gravel and secondary gold deposits
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Substantiation of field of application of combined (traditional and physicaland-chemical) geotechnologies for the development of gravel and secondary gold deposits

机译:证实(传统和物理与化学)组合地质技术在砾石和次生金矿床开发中的应用领域

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摘要

Problems of accumulation of technogenic tailings dumps and as a result of sluicing of gold sands of gravel deposits are considered in article. Additional recovery of fine and dispersed gold from a mineral mass of such technogenic formations can be carried out with use of physical and chemical geotechnologies. The factors influencing on the choice of a way of development of the gold gravel deposit are listed. The mathematical model of a gravel deposit is developed for the solution of the problem of multifactorial assessment of technological options of processing of gold sands. The scheme of the combined development of the gravel gold deposit is offered. Cuvette gold leaching experiments with the photo-electro activated solutions on various reagent basis were executed for the assessment of a developed scheme. Material for the researches was a gravity concentrate (schlich) fraction obtained by tailings gravity concentration (Kia gravel deposit, Transbaikal Territory). The first stage of gravity concentrate (schlich) processing included contacting with photoelectro activated carbonaceous solution (NaHCO_(3)). The first leaching reagent scheme (cyanide solution concentration of 1.5 g/l prepared on the basis of photo-electro activated the peroxide - carbonaceous solution provided 66.8 % gold extraction. The second reagent scheme (active chloride-carbonaceous solution) provided 88.9 % gold extraction.
机译:本文考虑了技术性尾矿堆的堆积问题以及砾石矿床金沙的淤积问题。可以通过使用物理和化学地球技术从这种技术形成地层的矿物中进一步回收细金和分散金。列出了影响金砾石矿床开发方式选择的因素。建立了砾石矿床的数学模型,用于解决金砂加工技术选择的多因素评估问题。提供了砾石金矿床联合开发方案。用基于各种试剂的光电活化溶液进行比色杯金浸出实验,以评估开发的方案。用于研究的材料是通过尾矿重力浓缩(起亚砾石矿床,Transbaikal领土)获得的重力浓缩物(schlich)级分。重力浓缩(schlich)处理的第一阶段包括与光电活化碳质溶液(NaHCO_(3))接触。第一种浸出试剂方案(基于光电活化的过氧化物-碳质溶液制备的氰化物溶液浓度为1.5 g / l)提供了66.8%的金萃取率;第二种试剂方案(活性氯化物-碳质溶液)提供了88.9%的金萃取率。 。

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