About micro- and nanoscale gold in the veil of gold-bearing territories (on the example of a mineralization site in the basin of the river Adamikha, Amur region)

IF 0.8 Q3 ENGINEERING, PETROLEUM Georesursy Pub Date : 2023-09-30 DOI:10.18599/grs.2023.3.22
Inna V. Kuznetsova, Anatoly I. Dementienko
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Abstract

The article identifies the problem of the need to take into account micro- (1 mm to 0.12 microns) and nanoscale (<0.12 microns) gold in placers and weathering crusts in order to increase the objectivity of their and eroded ore objects potential assesment. The results of technological studies of gold-bearing deluvial deposits in the valley of the Adamikha river basin (Amur region) are presented. A quantitative assessment of the content of micro- and nanogold by fractions of loose material was made. It was found that in the studied sample of such material (weighing 50 kg), the major part (78%) refers to native gold with a dimension of <0.12 microns. Including 0.1% is in concentrator minerals, and 3.5% of the fraction (<3 microns), probably colloidal, is in technical solutions of wet sieve. Moreover, 3/4 of the total amount (18% visible and 57% invisible) of gold is concentrated in the fraction (1–0.5 mm). It is established that, taking into account the free invisible gold, the resources of the precious metal of the object under study increase by 3.4 times. The possibility of a more objective quantitative assessment of the Au potential of promising areas, taking into account the content of fine gold, is shown. Possible ways of solving the problem of a more reliable assessment of geological reserves and estimation of forecast gold resources, taking into account the knowledge of the quantities of micro- and nanoscale fractions, are proposed. The authors believe that studies of the forms of allocation and distribution, including invisible (<0.12 microns) gold in placers and weathering crusts will contribute to a more correct assessment of the studied gold-bearing objects and territories with the possibility of increasing the real resource potential of the precious metal in the region.
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含金区域幔幔中的微纳米级金(以阿穆尔河流域某矿化点为例)
本文确定了需要考虑微尺度(1毫米至0.12微米)和纳米尺度(<0.12微米)金在砂矿和风化壳中的问题,以增加对其和侵蚀矿物潜在评价的客观性。本文介绍了阿穆尔河流域流域含金洪积矿床的技术研究成果。对松散物料中微量金和纳米金的含量进行了定量评价。研究发现,在该材料(重50 kg)的研究样品中,主要部分(78%)为天然金,尺寸为0.12微米。其中0.1%为选矿厂矿物,3.5%的部分(<3微米),可能是胶体,在湿筛的技术溶液中。此外,金总量的3/4(18%可见,57%不可见)集中在分数(1-0.5 mm)中。可以确定,考虑游离的无形金,研究对象的贵金属资源量增加了3.4倍。结果表明,考虑到细金的含量,有可能对有希望地区的金潜力进行更客观的定量评价。在此基础上,提出了利用微、纳米级分量的知识,更可靠地估算地质储量和预测金矿资源的可行方法。作者认为,研究砂矿和风化壳中无形(0.12微米)金的配置和分布形式,有助于更准确地评价所研究的含金对象和含金区域,有可能提高该地区贵金属的实际资源潜力。
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来源期刊
Georesursy
Georesursy ENGINEERING, PETROLEUM-
CiteScore
1.50
自引率
25.00%
发文量
49
审稿时长
16 weeks
期刊最新文献
Issues of rational subsoil use in modern conditions Refinement of the geological model of Jurassic deposits accounting the results of stochastic inversion and facies modeling The permanent temperature monitoring for flow rate quantification in production and injection wells Mineralogical and technological features of gold from placers of the southern slope of Belaya Gora (Khabarovsk Krai) and stages of its formation About micro- and nanoscale gold in the veil of gold-bearing territories (on the example of a mineralization site in the basin of the river Adamikha, Amur region)
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