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金属矿山 ›› 2026, Vol. 55 ›› Issue (8): 124-.

• 矿物工程 • 上一篇    

双难处理金矿生物氧化预处理机制及多组学解析研究进展

周子浩1,2 刘金艳1,2 左蔚然1,2 韦 能1,2 孙义豪1,2 周 鑫1,2 张贵雄1,2   

  1. 1.福州大学紫金地质与矿业学院,福建 福州 350108;2.福建省能源金属绿色提取与高值利用重点实验室,福建 福州 350108
  • 出版日期:2026-08-15 发布日期:2026-09-08
  • 通讯作者: 刘金艳(1984—),女,讲师,博士,硕士研究生导师。
  • 作者简介:周子浩(2000—),男,硕士研究生。
  • 基金资助:
    国家自然科学基金面上项目(编号:52574313)

Research Progress on Biological Oxidation Pretreatment Mechanism and Multi-Omics Analysis of Double Refractory Gold Ore

ZHOU Zihao1,2 LIU Jinyan1,2 ZUO Weiran1,2 WEI Neng1,2 SUN Yihao1,2  ZHOU Xin1,2 ZHANG Guixiong1,2   

  1. 1.Zijin College of Geology and Mining,Fuzhou University,Fuzhou 350108,China;2.Fujian Provincial Key Laboratory of Green Extraction and High-Value Utilization of New Energy Metals,Fuzhou 350108,China
  • Online:2026-08-15 Published:2026-09-08

摘要: 随着易处理金矿的逐渐枯竭,矿业界不得不面对难处理金矿的处理,其中兼具硫化物包裹与碳质“劫 金”效应的双难处理金矿(Double Refractory Gold Ores,DRGOs)已成为当前黄金冶炼的瓶颈。焙烧、加压氧化等传统 预处理方法虽能有效破坏硫化物结构并释放被包裹的金,但存在能耗与成本高、污染严重等问题,难以契合当代矿业 绿色低碳发展的需求。生物氧化作为一种环境友好型预处理技术,正逐步成为处理难选金矿尤其是双难处理金矿的 重要发展方向与研究热点。本文系统综述了生物氧化预处理金矿的作用机制与制约因素,重点阐述了硫化物生物氧 化的直接-间接协同机制、碳质物降解路径、钝化层形成规律与消除策略、微生物在高砷高酸环境下的应激防御机制, 并探讨了多组学技术在微生物功能网络与代谢调控解析中的应用。通过对上述研究进展的梳理与整合,本文揭示了 嗜酸微生物Fe/S能量代谢、砷抗性调控及自养-异养菌群协同代谢的核心机制,提出了协同处理“劫金”与“钝化”双 重难题的联合工艺发展方向,并指出多组学技术从数据描述向功能预测与精准调控跨越的未来趋势,旨在为双难处 理金矿的高效、可持续利用提供理论与技术支撑。

关键词: 双难处理金矿 , 生物氧化预处理 , 多组学 , 钝化层 , 砷抗性 , 碳质物 , 硫化物氧化

Abstract: As easily accessible gold ores are gradually depleted,the mining industry is increasingly compelled to address the processing of refractory gold ores.Among these,Double Refractory Gold Ores (DRGOs),characterized by both sulfide en capsulation and the carbonaceous "preg-robbing" effect,have emerged as a major bottleneck in current gold metallurgy.Al though traditional pretreatment methods such as roasting and pressure oxidation can effectively destroy sulfide structures and liberate the encapsulated gold,they suffer from high energy consumption,high costs,and severe pollution,making them incom patible with the contemporary demand for green and low-carbon development in the mining industry.Bio-oxidation,as an envi ronmentally friendly pretreatment technology,is progressively becoming a key development direction and research hotspot for the treatment of refractory gold ores,especially DRGOs.This review systematically summarizes the mechanisms and limiting factors of bio-oxidation pretreatment of gold ores,with emphasis on the direct-indirect synergistic mechanism of sulfide bio-oxi dation,degradation pathways of carbonaceous matter,formation patterns and elimination strategies of passivation layers,and the stress defense mechanisms of microorganisms under high-arsenic and high-acidity conditions.Furthermore,it discusses the ap plication of multi-omics technologies in deciphering the functional networks and metabolic regulation of microbial communities. By synthesizing the above research progress,this review elucidates the core mechanisms of Fe/S energy metabolism,arsenic re sistance regulation,and the synergistic metabolism of autotrophic-heterotrophic consortia in acidophilic microorganisms.It pro poses a combined processing route to synergistically address the dual challenges of "preg-robbing" and "passivation",andhighlights the future trend of multi-omics technologies transitioning from data description to functional prediction and precise regulation.This review aims to provide theoretical and technical support for the efficient and sustainable utilization of double re fractory gold ores.

Key words: double refractory gold ores,bio-oxidation pretreatment,multi-omics,passivation layer,arsenic resistance,car bonaceous matter,sulfide oxidation

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