霍洛德宁斯耶硫铁矿-多金属矿床成矿带的形成阶段

Yu. I. Tarasova, A. Budyak
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摘要

俄罗斯贝加尔湖-帕托姆高原Kholodninskoe黄铁矿多金属矿床于1968年被发现,但其成因至今仍有争议。认为贝加尔湖-穆亚带南部火山装置的爆炸活动以及弧后盆地分散扩张带的水下喷发极有可能影响了博代博和帕托姆带岩浆矿床的地球化学特征。为研究水下热液活动对贝加尔湖山地区新元古代含碳沉积物地球化学特征的影响,选取弧后盆地扩张带的一个片段Olokit带为研究对象。地球化学参数表明,承载Kholodninskoye矿床的Itykit组和Ondokskaya组沉积物属于DalnyaTaiga期古盆地沉积区。通过对Bodaibo和Olokit构造-形成带矿体硫化物成矿发育的比较,认为贝加尔山地区矿床形成过程具有统一性。草莓状黄铁矿的存在表明Kholodninskoe热液-层状多金属矿床的早期成矿与沉积是同步的。矿床成矿带富集锌、铅、银等中低温组合典型元素的来源为弧后盆地分散扩张带的热液。研究区内南贝加尔湖-穆亚带的爆炸和喷发活动可能也进一步向北扩散,从而影响了Bodaibo和Patom带岩浆黑色页岩地层中嗜铁嗜铜地球化学特化的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation stages of the Kholodninskoye pyrite-polymetallic deposit ore zone
The Kholodninskoe pyrite-polymetallic deposit (Baikal-Patom plateau, Russia) was discovered in 1968, but the questions of its genesis still remain controversial. It is assumed that the explosive activity of volcanic apparatuses of the southern part of the Baikal-Muya zone as well as underwater exhalations of the scattered spreading zone of the back-arc basin could have most likely influenced the geochemical features of amagmatic deposits of the Bodaibo and Patom zones. To investigate the influence of underwater hydrothermal activity on the geochemical features of Neoproterozoic carbonbearing sediments of the Baikal Mountain region, the Olokit zone, which is a fragment of the spreading zone of the backarc basin, was chosen. According to the geochemical parameters, the sediments of the Itykit and Ondokskaya formations hosting the Kholodninskoye deposit fall into the sedimentation area of DalnyaTaiga period paleobasins. Having compared the development of sulfide mineralization of ore objects of the Bodaibo and Olokit structural-formation zones, the authors suggest the unity of deposit formation processes within the Baikal Mountain area. The presence of framboidal pyrite indicates that the early stages of ore formation of the Kholodninskoe hydrothermal-stratiform polymetallic deposit were synchronous with sedimentation. The source of deposit ore zone enrichment with zinc lead, silver and other elements typical for low- and medium-temperature associations was a hydrothermal solution of the scattered spreading zone of back-arc basins. It is likely that the explosive and exhalation activities of the southern Baikal-Muya zone within the studied region also spread further northward, thus influencing the formation of siderochalcophilic geochemical specialization of amagmatic black shale strata of the Bodaibo and Patom zones. 
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