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新型陶瓷粉/冶炼渣微晶泡沫玻璃研制

Preparation of foam-glass ceramics from smelting slag and procelain tile

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【作者】 牛永红樊晓阳任达李义科王文才杨占峰崔凌霄

【Author】 NIU Yonghong;FAN Xiaoyang;REN Da;LI Yike;WANG Wencai;YANG Zhanfeng;CUI Lingxiao;School of Energy and Environment, Inner Mongolia University of Science and Technology;Mining Research Institute, Inner Mongolia University of Science and Technology;State Key Laboratory of Baiyunobo Rare Earth Resource Researches and Comprehensive Utilization;Baotou Research Institute of Rare Earths;

【通讯作者】 王文才;

【机构】 内蒙古科技大学能源与环境学院内蒙古科技大学矿业研究院白云鄂博稀土资源研究与综合利用国家重点实验室包头稀土研究院

【摘要】 以冶炼渣为主要原料,配比一定比例陶瓷废料调质,采用"一步法"粉末烧结法制备新型微晶泡沫玻璃。以控制变量法研究不同掺量的Na2CO3对微晶泡沫玻璃的影响;结合DSC、XRD、TOM-ac等现代分析测试技术,分析微晶泡沫玻璃样品气孔结构、玻璃物相组成、样品烧结过程中形貌体积变化,优化研制配方。该实验过程中所制备的微晶泡沫玻璃的晶相以硅灰石Ca3Si3O9与次透辉石CaFe(Si2O6)为主,其抗压强度可达到13.06 MPa,密度为0.731 g/cm3。制备得到泡沫微晶玻璃集中了微晶玻璃和泡沬玻璃的优点,具有机械强度高、密度小、热膨胀系数小、化学稳定性优良等特点,既解决了污染环境、资源浪费等问题,同时在建筑等行业具有广泛的应用价值,为冶炼渣的综合利用提供了新的途径。

【Abstract】 A new type of foam-glass ceramics was synthesized by the method of powder sintering(one-step) with smelting slag and porcelain powder as the main raw material. In addition, the pore structure, glass phase composition, glass network structure and crystal structure of foam-glass ceramics were explored by modern analytical techniques such as DSC, XRD and TOM-ac. The foam-glass ceramics prepared by the experiment was composed of wollastonite CaSiO3 and diopside CaMgSi2O6. The compressive strength was 13.06 MPa and the density was 0.731 g/cm3. In this study, a new way for the comprehensive utilization of hazardous waste was provided. The preparation of foam glass ceramics combined the merits of the glass ceramics and foam glass. It not only solved the problems of polluting the environment and wasting resources, but also got the quality products which was valuable to human activities, and improved the added value of slag.

【基金】 国家自然科学基金资助项目(51768054,51764044);内蒙古自治区科技创新引导资助项目(KCBJ2018077);内蒙古自然科学基金资助项目(2017MS(LH)0524);内蒙古科学技术厅资助项目(20180823);包头市中科发展科技有限责任公司资助项目(ZK2018H003)
  • 【文献出处】 功能材料 ,Journal of Functional Materials , 编辑部邮箱 ,2020年10期
  • 【分类号】TQ171.722
  • 【被引频次】4
  • 【下载频次】259
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