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现代矿业 ›› 2026, Vol. 42 ›› Issue (08): 101-104.

• 矿物加工工程 • 上一篇    下一篇

某贫杂铁矿石工艺矿物学研究

满晓霏1,2 杨晓峰1,2 智 慧1,2 董振海1,2 赵治府1,2 褚会超1,2 杜 鑫1,2 付浴晓1,2   

  1. 1. 鞍钢集团北京研究院有限公司;2. 辽宁鞍研科技有限公司
  • 出版日期:2026-08-25 发布日期:2026-08-21

Process Mineralogy Study of a Certain Lean and Impure Iron Ore

MAN Xiaofei1,2 YANG Xiaofeng1,2 ZHI Hui1,2 DONG Zhenhai1,2 ZHAO Zhifu1,2 CHU Huichao1,2 DU Xin1,2 FU Yuxiao1,2   

  1. 1. Ansteel Beijing Research Institute Co.,Ltd.;2. Liaoning Anyan Technology Co.,Ltd.
  • Online:2026-08-25 Published:2026-08-21

摘要: 为充分了解某贫杂铁矿石的矿石性质,便于确定合理的选别工艺流程,采用化学多 元素分析、MLA 等手段,系统研究了矿石的物质组成、矿物嵌布特征、粒度分布及主要矿物单体解 离度与连生关系。结果表明,矿石属低磷含硫的单一酸性中品位原生磁铁矿矿石,铁品位仅 32.80%,SiO₂含量高达 43.38%,为主要脉石组分。矿石呈浸染状或浸染条带状构造,铁矿物以磁铁 矿为主(占矿物总量的 35.92%),偶见赤铁矿、褐铁矿,金属硫化物含量较低,脉石矿物主要为石英、 闪石和云母。磁铁矿嵌布粒度一般为 0.005~0.3 mm,呈稠密至稀疏浸染状分布,主要沿闪石、云 母、绿泥石边缘及粒间嵌布,有利于解离,故磨矿细度可在-0.019 mm 基础上适当放粗。磨矿细度 分别为-0.074 mm 占 85%、-0.043 mm 占 75% 和-0.038 mm 占 90% 时,铁矿物单体与富连生体合计分 布率分别为 87.55%、91.38%、97.23%,主要连生矿物为石英、闪石、云母、绿泥石,次为长石、磁黄铁 矿和磷灰石。研究结果为该矿石选矿工艺的确定提供了系统的基础依据。

关键词: 磁铁矿, 工艺矿物学, 单体解离度

Abstract: To fully understand the ore properties of a certain lean and impure iron ore and facilitate the determination of a reasonable beneficiation process,chemical multi-element analysis,MLA and other techniques were employed to systematically investigate the mineral composition,dissemination characteris⁃ tics,particle size distribution,as well as the monomer dissociation degree and intergrowth relationships of the major minerals. The results show that the ore is a low phosphorus,sulfur bearing,single acidic,medi⁃ um grade primary magnetite ore,with an iron grade of only 32.80% and a SiO₂ content of 43.38%,which is the main gangue component to be removed. The ore exhibits disseminated or disseminated banded struc⁃ tures. The iron mineral is predominantly magnetite (accounting for 35.92% of the total minerals),occasion⁃ ally with sporadic hematite and limonite;sulfide minerals are present in low contents,and the gangue min⁃ erals are mainly quartz,amphibole and mica. Magnetite is disseminated in the gangue in dense,moderate⁃ ly dense to sparse scattered forms or as disseminated bands,with a grain size generally ranging from 0.005 to 0.3 mm. It is mainly embedded along the edges and intergranular spaces of amphibole,mica and chlorite,which favours liberation;therefore,the grinding fineness can be appropriately coarsened based on -0.019 mm. At grinding finenesses of -0.074 mm 85%,-0.043 mm 75% and -0.038 mm 90%,the combined distribution rates of iron mineral monomers and rich intergrowths reach 87.55%,91.38% and 97.23%,respectively. The main intergrown minerals are quartz,amphibole,mica and chlorite,followed by feldspar,pyrrhotite and apatite. These findings provide a systematic fundamental basis for determining the beneficiation process for this ore.

Key words: magnetite, process mineralogy, monomer dissociation degree