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Properties and Mechanism of Mine Tailings Solidified and Filled with Fluorgypsum-based Binder Material 被引量:1

Properties and Mechanism of Mine Tailings Solidified and Filled with Fluorgypsum-based Binder Material
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摘要 The properties and microscopic structure of tailings solidification bodies, the hardening mechanism of the fluorgypsum-based binder material (FBBM) and tailings solidification mechanism were investigated. FBBM consisted of 40% fluorgypsum,25%-50% blast furnace slag,10%-35% ordinary Portland cement clinker(OPCC) and 1% activator, which was good material in binding iron ore tailings.XRD analysis showed that the properties of tailings solidification bodies was related to its ettringite content.SEM and XRD analyses of tailings solidification bodies showed that the chemical reaction was produced between FBBM and tailings in the whole hydration process. The hydration of the resulting gel material covered the surface of the tailings particles and formed a gel structure. A large number of ettringite crystals and the remaining board-like gypsum crystals took each end and constituted the structural skeleton. The filamentous network-like calcium-silicate-hydrate(C-S-H) gel bonded firmly together with ettringite crystals, dehydrated gypsum crystals and granular tailings, and formed an extremely dense whole. The properties and microscopic structure of tailings solidification bodies, the hardening mechanism of the fluorgypsum-based binder material (FBBM) and tailings solidification mechanism were investigated. FBBM consisted of 40% fluorgypsum,25%-50% blast furnace slag,10%-35% ordinary Portland cement clinker(OPCC) and 1% activator, which was good material in binding iron ore tailings.XRD analysis showed that the properties of tailings solidification bodies was related to its ettringite content.SEM and XRD analyses of tailings solidification bodies showed that the chemical reaction was produced between FBBM and tailings in the whole hydration process. The hydration of the resulting gel material covered the surface of the tailings particles and formed a gel structure. A large number of ettringite crystals and the remaining board-like gypsum crystals took each end and constituted the structural skeleton. The filamentous network-like calcium-silicate-hydrate(C-S-H) gel bonded firmly together with ettringite crystals, dehydrated gypsum crystals and granular tailings, and formed an extremely dense whole.
作者 黄绪泉 周旻
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第3期465-470,共6页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National High Technology Research and Development Program (863 Project) (No.2009AA064004) the Fundamental Research Funds for the Central Universities (No.5082011 and No.1104003)
关键词 FLUORGYPSUM tailings solidification body blast furnace slag toxicity ETTRINGITE fluorgypsum tailings solidification body blast furnace slag toxicity ettringite
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