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Preparation of Thermal Insulation Ceramics Using Felsic Tailings as Main Raw Material and Soda-ash Dregs as Flux

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【作者】 吕宪俊YAO GengWANG QiangZHU XiangnanQU MeiyunZHAO WeiLIU QingSUN ShaokangXIA Chuanbo

【Author】 WANG Zhiming;YAO Geng;WANG Qiang;ZHU Xiangnan;QU Meiyun;ZHAO Wei;LIU Qing;SUN Shaokang;XIA Chuanbo;Lü Xianjun;School of Chemical and Biological Engineering, Shandong University of Science and Technology;Shandong Institute of Geological Sciences, Key Laboratory of Gold Mineralization Processes and Resource Utilization,MNR, Shandong Provincial Key Laboratory of Metallogenic Geological Process and Resource Utilization;College of Chemistry, Chemical Engineering and Materials Science, Zaozhuang University;Jigang International Engineering & Technology Co.,Ltd.;

【通讯作者】 吕宪俊;

【机构】 School of Chemical and Biological Engineering, Shandong University of Science and TechnologyShandong Institute of Geological Sciences, Key Laboratory of Gold Mineralization Processes and Resource Utilization,MNR, Shandong Provincial Key Laboratory of Metallogenic Geological Process and Resource UtilizationCollege of Chemistry, Chemical Engineering and Materials Science, Zaozhuang UniversityJigang International Engineering & Technology Co.,Ltd.

【摘要】 Low-cost thermal insulation porous ceramics with uniform pore diameter and low bulk density were prepared with soda-ash dregs and felsic tailings. We investigated the effect of temperature, foaming agent, fluxing agent, Al2O3 and CaO content on the pore structure and crystal phase of porous ceramics. The effect of Ca2+ in soda-ash dregs on the preparation of quartz-feldspar based porous ceramics was studied. The results showed that the contribution of Ca2+ to the preparation of porous ceramics in this system was mainly to accelerate the Si-O bond fracture and reduce the sintering temperature at the initial stage of sintering, which destroyed the needle-like feldspar in the high temperature melt and reduced the melt viscosity, thus reduced the foaming resistance and promoted the porous products with uniform pore size distribution. The Ca2+ content on the high side can participate in the formation of crystals in sintering. The generated needle-like diopside and augite, which have small length-diameter ratio, will negligibly change in the viscosity of melt at high temperatures, and their inhibition effect on pores is not as good as that of feldspar with large length-diameter ratio, resulting in the merger and collapse of pores. But the increase of diopside and augite can improve the compressive strength of porous products to some extent. Porous ceramic products containing needle-like feldspar phase can be prepared by using two kinds of solid waste, which can improve the compressive strength of the products and reduce the raw material cost and energy consumption while comprehensively utilizing the double solid waste. The optimal product has a bulk density of 0.45 g/cm3, a compressive strength of 3.17 MPa,and a thermal conductivity of 0.11 W/(m·K).

【Abstract】 Low-cost thermal insulation porous ceramics with uniform pore diameter and low bulk density were prepared with soda-ash dregs and felsic tailings. We investigated the effect of temperature, foaming agent, fluxing agent, Al2O3 and CaO content on the pore structure and crystal phase of porous ceramics. The effect of Ca2+ in soda-ash dregs on the preparation of quartz-feldspar based porous ceramics was studied. The results showed that the contribution of Ca2+ to the preparation of porous ceramics in this system was mainly to accelerate the Si-O bond fracture and reduce the sintering temperature at the initial stage of sintering, which destroyed the needle-like feldspar in the high temperature melt and reduced the melt viscosity, thus reduced the foaming resistance and promoted the porous products with uniform pore size distribution. The Ca2+ content on the high side can participate in the formation of crystals in sintering. The generated needle-like diopside and augite, which have small length-diameter ratio, will negligibly change in the viscosity of melt at high temperatures, and their inhibition effect on pores is not as good as that of feldspar with large length-diameter ratio, resulting in the merger and collapse of pores. But the increase of diopside and augite can improve the compressive strength of porous products to some extent. Porous ceramic products containing needle-like feldspar phase can be prepared by using two kinds of solid waste, which can improve the compressive strength of the products and reduce the raw material cost and energy consumption while comprehensively utilizing the double solid waste. The optimal product has a bulk density of 0.45 g/cm3, a compressive strength of 3.17 MPa,and a thermal conductivity of 0.11 W/(m·K).

【基金】 Supported by the National Natural Science Foundation of China(No.51674161);Major Basic Research Projects of Shandong Province Natural Science Foundation (No.ZR2017ZC0735);Open Topic of Key Laboratory of Gold Mineralization Processes and Resource Utilization Subordinated to the Ministry of Land and Resources and Key Laboratory of Metallogenic Geological Process and Resources Utilization in Shandong Province (No.Kfkt201812);Research on Precious Metal Mineral Achievement Integration and Tailings Comprehensive Utilization in Shandong Province (Shandong Geological Exploration Document:[2018]No.10)
  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2023年01期
  • 【分类号】TD926.4;TQ174.7
  • 【下载频次】5
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