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细粒菱铁矿、石英和赤铁矿吸附团聚的机理
引用本文:赵瑞超,韩跃新,杨光,李艳军. 细粒菱铁矿、石英和赤铁矿吸附团聚的机理[J]. 东北大学学报(自然科学版), 2015, 36(4): 596-600. DOI: 10.12068/j.issn.1005-3026.2015.04.030
作者姓名:赵瑞超  韩跃新  杨光  李艳军
作者单位:(1. 东北大学 资源与土木工程学院, 辽宁 沈阳110819; 2.鞍山钢铁集团公司 东鞍山烧结厂, 辽宁 鞍山114001)
基金项目:国家“十二五”科技支撑计划项目(2012BAB14B00)
摘    要:含菱铁矿难选铁矿石在磨矿作业过程中,菱铁矿极易泥化,并大量吸附在脉石和有用矿物的表面上,恶化了后续选别作业.为了查明微细粒菱铁矿、石英和赤铁矿在矿浆中吸附团聚的本质及规律,利用DLVO理论探讨了微细粒菱铁矿与粗粒石英、微细粒菱铁矿与赤铁矿及细粒菱铁矿之间的作用机理.计算结果表明:微细粒菱铁矿容易吸附罩盖在粗粒石英和赤铁矿表面,微细粒菱铁矿和微细粒赤铁矿相互作用发生团聚现象,而微细粒菱铁矿之间不发生吸附团聚现象.

关 键 词:微细粒菱铁矿  石英  赤铁矿  吸附团聚  DLVO理论  

Mechanism of Adsorption and Aggregation of Fine Siderite,Quartz and Hematite
ZHAO Rui-chao , HAN Yue-xin , YANG Guang , LI Yan-jun. Mechanism of Adsorption and Aggregation of Fine Siderite,Quartz and Hematite[J]. Journal of Northeastern University(Natural Science), 2015, 36(4): 596-600. DOI: 10.12068/j.issn.1005-3026.2015.04.030
Authors:ZHAO Rui-chao    HAN Yue-xin    YANG Guang    LI Yan-jun
Affiliation:1.School of Resources & Civil Engineering, Northeastern University, Shenyang 110819, China; 2. Donganshan Sintering Plant, Anshan Iron & Steel Group Corporation, Anshan 114001,China.
Abstract:In the grinding process of refractory iron ore containing siderite, the siderite is very easy to be slimed. A large number of fine siderite particles were adsorbed on the surface of gangue and useful minerals, which seriously deteriorates the following processing. In order to find out the essence and rules of adsorption and aggregation among the fine siderite,quartz and hematite in pulp, DLVO theory was applied to study the interaction mechanism between the fine siderite particle and the coarse quartz particle , the fine siderite particle and hematite particle, the fine siderite particles,etc. The calculating results showed that the fine siderite particles are easily adsorbed on the surface of coarse quartz particles and hematite particles. The agglomeration phenomenon occurs between fine siderite particles and fine hematite particles, and doesn′t occur between the fine siderite particles.
Keywords:fine siderite  quartz  hematite  adsorption and aggregation  DLVO theory
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